EP3891386B1 - Method for pretensioning a tower of a wind power plant - Google Patents
Method for pretensioning a tower of a wind power plant Download PDFInfo
- Publication number
- EP3891386B1 EP3891386B1 EP19808573.0A EP19808573A EP3891386B1 EP 3891386 B1 EP3891386 B1 EP 3891386B1 EP 19808573 A EP19808573 A EP 19808573A EP 3891386 B1 EP3891386 B1 EP 3891386B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- tower
- foundation
- tensioning
- adapter element
- anchor
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
- 238000000034 method Methods 0.000 title claims description 19
- 125000006850 spacer group Chemical group 0.000 claims description 15
- 238000009434 installation Methods 0.000 claims description 11
- 238000013461 design Methods 0.000 description 11
- 239000011513 prestressed concrete Substances 0.000 description 10
- 210000002435 tendon Anatomy 0.000 description 10
- 229910000831 Steel Inorganic materials 0.000 description 9
- 239000004567 concrete Substances 0.000 description 9
- 238000011161 development Methods 0.000 description 9
- 230000018109 developmental process Effects 0.000 description 9
- 239000010959 steel Substances 0.000 description 9
- 238000004873 anchoring Methods 0.000 description 7
- 238000004519 manufacturing process Methods 0.000 description 6
- 239000000835 fiber Substances 0.000 description 5
- 239000011150 reinforced concrete Substances 0.000 description 5
- 238000012423 maintenance Methods 0.000 description 4
- 239000000463 material Substances 0.000 description 3
- 238000006073 displacement reaction Methods 0.000 description 2
- 230000036316 preload Effects 0.000 description 2
- 229920000049 Carbon (fiber) Polymers 0.000 description 1
- 239000000853 adhesive Substances 0.000 description 1
- 230000001070 adhesive effect Effects 0.000 description 1
- 239000004760 aramid Substances 0.000 description 1
- 229920006231 aramid fiber Polymers 0.000 description 1
- 239000004917 carbon fiber Substances 0.000 description 1
- 239000000919 ceramic Substances 0.000 description 1
- 230000009194 climbing Effects 0.000 description 1
- 230000005520 electrodynamics Effects 0.000 description 1
- 238000005516 engineering process Methods 0.000 description 1
- 239000003365 glass fiber Substances 0.000 description 1
- 230000005484 gravity Effects 0.000 description 1
- 238000011065 in-situ storage Methods 0.000 description 1
- 230000002093 peripheral effect Effects 0.000 description 1
- 239000004033 plastic Substances 0.000 description 1
- 230000002787 reinforcement Effects 0.000 description 1
- 238000009420 retrofitting Methods 0.000 description 1
- 239000002689 soil Substances 0.000 description 1
- 239000012209 synthetic fiber Substances 0.000 description 1
- 229920002994 synthetic fiber Polymers 0.000 description 1
- 238000012546 transfer Methods 0.000 description 1
Images
Classifications
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- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04H—BUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
- E04H12/00—Towers; Masts or poles; Chimney stacks; Water-towers; Methods of erecting such structures
- E04H12/16—Prestressed structures
-
- E—FIXED CONSTRUCTIONS
- E02—HYDRAULIC ENGINEERING; FOUNDATIONS; SOIL SHIFTING
- E02D—FOUNDATIONS; EXCAVATIONS; EMBANKMENTS; UNDERGROUND OR UNDERWATER STRUCTURES
- E02D27/00—Foundations as substructures
- E02D27/32—Foundations for special purposes
- E02D27/42—Foundations for poles, masts or chimneys
- E02D27/425—Foundations for poles, masts or chimneys specially adapted for wind motors masts
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04C—STRUCTURAL ELEMENTS; BUILDING MATERIALS
- E04C5/00—Reinforcing elements, e.g. for concrete; Auxiliary elements therefor
- E04C5/08—Members specially adapted to be used in prestressed constructions
- E04C5/12—Anchoring devices
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- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03D—WIND MOTORS
- F03D13/00—Assembly, mounting or commissioning of wind motors; Arrangements specially adapted for transporting wind motor components
- F03D13/20—Arrangements for mounting or supporting wind motors; Masts or towers for wind motors
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F03—MACHINES OR ENGINES FOR LIQUIDS; WIND, SPRING, OR WEIGHT MOTORS; PRODUCING MECHANICAL POWER OR A REACTIVE PROPULSIVE THRUST, NOT OTHERWISE PROVIDED FOR
- F03D—WIND MOTORS
- F03D13/00—Assembly, mounting or commissioning of wind motors; Arrangements specially adapted for transporting wind motor components
- F03D13/20—Arrangements for mounting or supporting wind motors; Masts or towers for wind motors
- F03D13/22—Foundations specially adapted for wind motors
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F05—INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
- F05B—INDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
- F05B2240/00—Components
- F05B2240/90—Mounting on supporting structures or systems
- F05B2240/91—Mounting on supporting structures or systems on a stationary structure
- F05B2240/912—Mounting on supporting structures or systems on a stationary structure on a tower
-
- F—MECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
- F05—INDEXING SCHEMES RELATING TO ENGINES OR PUMPS IN VARIOUS SUBCLASSES OF CLASSES F01-F04
- F05B—INDEXING SCHEME RELATING TO WIND, SPRING, WEIGHT, INERTIA OR LIKE MOTORS, TO MACHINES OR ENGINES FOR LIQUIDS COVERED BY SUBCLASSES F03B, F03D AND F03G
- F05B2240/00—Components
- F05B2240/90—Mounting on supporting structures or systems
- F05B2240/91—Mounting on supporting structures or systems on a stationary structure
- F05B2240/917—Mounting on supporting structures or systems on a stationary structure attached to cables
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/70—Wind energy
- Y02E10/72—Wind turbines with rotation axis in wind direction
-
- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02E—REDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
- Y02E10/00—Energy generation through renewable energy sources
- Y02E10/70—Wind energy
- Y02E10/728—Onshore wind turbines
Definitions
- the invention relates to a method for prestressing a tower of a wind turbine.
- Prestressed concrete structures are braced and stiffened with tensioning elements by applying a tensile force.
- Towers often include a number of assembled tower segments.
- a single tower segment or a first and a second tower segment or the number of tower segments can be placed under tension alone or among each other.
- the tensioning elements are anchored accordingly on the tower, for example on the tower base or foundation and on the tower wall, in order to pre-stress the tower over the height.
- the tensioning elements can run in the tower wall, which is also referred to as internal prestressing.
- empty sleeves are usually concreted in when concreting, through which the clamping elements are later pulled.
- the tendons can also run outside the tower wall, for example on the inside of the tower, which is also referred to as external prestressing.
- the tensioning elements can be anchored, for example, using a fixed anchor and a tensioning anchor.
- a prestressed concrete tower for a wind turbine with a foundation a tower essentially made of concrete and at least one rope-like prestressing steel element for bracing the tower is known.
- the prestressing steel element is fixed by means of clamping pockets arranged on the tower.
- DE 10 2013 211 750 A1 discloses a wind turbine with a foundation and a tower, the foundation having a foundation plate and a foundation base on the foundation plate.
- a prestressing strand connection with a plurality of holes for receiving prestressing strands is provided on the foundation base, the prestressing strands being clamped on an underside of the connection by means of a prestressing strand head.
- the foundation plate and the foundation base are cast from concrete.
- a wind turbine with a foundation a steel tower with a plurality of tower segments and a plurality of tensioning elements is disclosed.
- a lower end of the clamping elements is fastened in or under a first foundation section by means of a fastening unit.
- the clamping elements are attached at an upper end by means of a fastening unit in or under a first foundation section.
- An upper end of the tensioning elements protrudes beyond an upper end of the concrete foundation base and runs through the passage quivers.
- the upper ends of the clamping elements are clamped using fastening units.
- An outside of the concrete foundation base is conical.
- DE 10 2013 226 536 relates to an arrangement with a concrete foundation and a tower for supporting a nacelle of a wind turbine, wherein the tower comprises a number of tower segments which are arranged along a tower axis and at least one uppermost tower segment comprises a head flange and a foot flange, wherein an uppermost tower segment has the number of Tower segments are formed as a steel element; and a number of tension or tension strands brace the concrete foundation with the head flange of the top tower segment under tensile stress.
- a wind turbine with a foundation and a tower placed on the foundation with a plurality of tower segments is disclosed.
- the foundation here has a tower base, which is at least partially cast in the foundation. It is provided here that the tower base has at least two segments and a lower tower segment of the tower is clamped together with the segments of the tower base, in particular via tension rods.
- US 2018/238071 A1 discloses a system and method for installing a tendon in an equipment tower.
- CN 204 024 188 U discloses an external tension anchor bundle balance screw stretch pull anchor device for a concrete tower.
- the device includes an external tension anchor bundle, a compensation screw and a flat connection plate.
- the invention is therefore based on the object of addressing at least one of the problems mentioned.
- At least an alternative solution to previously known solutions should be found.
- a foundation arrangement for a tower of a wind turbine comprising a foundation with an anchor section and a support section for supporting a tower wall and an adapter element with a fastening device for fastening a lower end of a tensioning element for pre-stressing a tower for a wind turbine, and with a connection device for connecting the adapter element to the anchor section of the foundation.
- the invention is based on the knowledge that in existing solutions for anchoring and/or prestressing on the foundation, a foundation cellar is usually formed below the foundation in order to fasten the tensioned tendons to, for example, a ceiling of the foundation cellar by means of a tensioning anchor.
- the tendons are connected through a corresponding opening in the The basement ceiling is carried out, tensioned by a hydraulic ram device and then secured to the ceiling using the tension anchor.
- a reliable preload can be achieved here. However, this is accompanied by high assembly costs and a lot of work.
- the adapter element is used to pretension and/or anchor tensioning elements of the tower of the wind turbine, in particular to apply an external and/or internal tension force to the tower of the wind turbine.
- the adapter element has a fastening device to which the lower end of the clamping element can be fastened and preferably clamped and/or anchored.
- An upper end of the tensioning element can preferably be attached and preferably anchored to an upper end of a wind turbine tower.
- the tensioning of the tensioning element can preferably take place at the lower and/or upper end of the wind turbine tower.
- a clamping tool can be attached to one end of the clamping element.
- the adapter element can preferably be arranged on the anchor section of the foundation and can preferably be fastened in a stationary manner to the anchor section of the foundation by means of a connecting device.
- the anchor section is designed to interact with the connection device of the adapter element.
- the anchor section can in particular be designed as a part of the top of the foundation and preferably extend from the top of the foundation into the interior of the foundation.
- the adapter element can be arranged on the anchor section, so that anchoring and/or bracing of the tensioning elements can preferably take place on or above an upper side of the foundation and a foundation basement can be omitted.
- the foundation preferably has a support section which is designed as a contact area for a tower wall.
- the support section can be designed to accommodate and fasten a lower tower segment.
- a tower wall or a lower tower segment can be arranged on the support section.
- the support section can in particular be designed as a part of the top of the foundation and preferably extend from the top of the foundation into the interior of the foundation.
- Foundation arrangements with a foundation and an adapter element for prestressing a wind turbine tower are manufactured much more cost-effectively and/or can be mounted, as known solutions for prestressing a wind turbine tower, such as with a foundation cellar. This means that foundations can be made flatter, thereby saving material costs. Furthermore, such adapter elements can also be used to clamp wind turbine towers more cost-effectively and/or with greater reliability overall.
- the adapter element can preferably be arranged in the interior of the wind turbine tower.
- adapter elements are preferably not visible on an outer peripheral surface of the tower.
- the arrangement of preferably individual adapter elements enables greater flexibility with regard to the interior design in the tower. For example, certain areas of the foundation surface inside the tower can be kept free for installations, such as lines, climbing aids or the like.
- the adapter element can preferably be arranged outside the tower in order to be accessible from the outside.
- a combination of adapter elements outside and inside the tower wall can also be preferred.
- a further advantage of the foundation arrangement with the adapter element attached to the anchor section of the foundation is that a foundation of less complexity can be used, which reduces the technological effort and the cost of producing the foundation. Furthermore, both the maintenance and the maintenance of the prestressing of the wind turbine tower can be facilitated.
- wind turbine towers that are already in operation can be retrofitted with both an internal and/or external preload with the adapter element.
- wind turbine towers with, for example, a damaged number of clamping elements and/or an insufficient number of clamping elements for a changed load situation can also be retrofitted with the adapter element and further clamping elements and so continued to be operated.
- the foundation can preferably be embedded in an excavated soil, with the top of the foundation particularly preferably lying essentially at ground level and preferably being flat and/or at least not curved.
- the foundation can have at least one elevated section, the top of which is above the ground level, and/or at least one lower section, the top of which is below the ground level.
- the Support section can particularly preferably be spaced apart from the anchor section or be formed adjacent to it.
- the support section and the anchor section can be spaced differently from a vertical longitudinal axis of the wind turbine tower.
- the anchor section can have a larger and/or smaller distance from the vertical longitudinal axis of the wind turbine tower in the radial direction than the support section.
- the adapter element can therefore be arranged further inside and/or further outside in comparison to the tower wall.
- the support section can be annular, particularly preferably adapted to a shape of the tower wall of the wind turbine tower.
- Wind turbine towers generally have an annular cross section orthogonal to the vertical longitudinal axis.
- This annular cross section can be circular or have a polygonal shape.
- the term annular is therefore not only understood to mean an annular configuration, but also a polygonal and/or polygonal configuration with several straight sections.
- the anchor section can therefore be formed in particular within the self-contained, circumferential support section and/or outside the self-contained, circumferential support section.
- the adapter element can preferably be arranged and fastened on the anchor section, i.e. on the top of the foundation.
- the adapter element can be attached to the anchor section, for example, by means of an adhesive or connector layer.
- the underside of the adapter element can preferably extend into an interior of the anchor section, i.e. into an interior of the foundation, and be fastened there, in particular embedded in concrete.
- the underside of the adapter element can also be arranged and preferably fastened on a spacer, the spacer preferably being arranged and preferably fastened on the anchor section.
- the adapter element can be releasably attached to the spacer and the spacer to the anchor section.
- the spacer can be arranged on the anchor section and preferably fastened by means of a weight of the adapter element.
- the spacer can be used as two, three or more spaced apart, preferably evenly spaced, stools or a self-contained ring, in particular adapted to a shape of the underside of the adapter element, may be formed.
- two, three or more clamping elements can be provided, which preferably run parallel to one direction, preferably parallel to a longitudinal axis of the wind turbine tower.
- the clamping elements can also be inclined to the longitudinal axis of the wind turbine tower.
- an angle of inclination of a clamping element corresponds to the angle of inclination of the wind turbine tower, in particular an inner and/or outer side of the wall of the wind turbine tower.
- the clamping element can preferably have different angles of inclination.
- Clamping elements are preferably made of steel or a material comprising steel.
- clamping elements can consist of fibers or include fibers, in particular steel fibers and/or carbon fibers and/or aramid fibers and/or ceramic fibers and/or natural fibers and/or glass fibers and/or the like.
- Clamping elements can, for example, comprise rods and/or be rod-shaped.
- Tensioning elements can include ropes or be rope-shaped.
- Tensioning elements can include inserts and/or strands, with one strand preferably comprising several wires. The insert is preferably surrounded by strands and/or wires.
- a material of the insert can comprise plastic and/or steel and/or natural and/or synthetic fibers, with the insert preferably being wire-like and/or rope-like and/or rod-like and/or fiber-like and/or rod-like.
- the fastening device is designed for fastening the clamping element, in particular for fastening a connection head, preferably in the form of a wedge, of the clamping element.
- the fastening device is preferably designed to be connected to the tensioning element in a preferably releasable and/or preferably prestressed manner.
- the clamping element is preferably designed to be connected to the connection head, in particular the wedge, in the fastening device, preferably fastened and/or preferably prestressed.
- the connection head can preferably be fastened and/or preferably connected in a prestressed manner within the fastening device by means of an anchor.
- the adapter element preferably has two, three or more clamping elements and/or two, three or more fastening devices.
- the number of clamping elements is equal to the number of fastening devices.
- Two, three or more adapter elements are arranged on the anchor section and/or on two, three or more anchor sections, wherein preferably the adapter elements are arranged equidistantly, in particular in the circumferential direction, spaced apart from one another.
- the prestressing in particular the application of a tensile force, for example by clamping elements, can also be referred to as bracing.
- the two terms “prestressing” and “bracing” (and pairs of terms derived therefrom such as prestressing/bracing, prestressed/stressed, etc.) can therefore preferably be understood as interchangeable and/or synonymous.
- Enabling the application of a tensile force can also be referred to as anchoring.
- anchoring or “anchoring” can therefore be understood as synonymous here.
- directions such as radial, circumferential, etc., preferably refer to a tower, in particular to a substantially vertical longitudinal axis of a tower, and refer to any Cross-sectional shapes of such a tower, in particular both circular cross-sections and polygonal cross-sections.
- information such as horizontal, vertical, bottom, top, etc. also preferably relate to an installed state of a wind turbine tower.
- the foundation forms a lower end and a nacelle forms an upper end of a wind turbine tower when installed.
- the invention is not limited to use in wind turbine towers, even if it can be used particularly advantageously and economically here. Rather, a foundation arrangement described here for prestressing can also be used in similar load situations of other structures, in particular towers of other types.
- the adapter element is annular.
- a cross section of the opening defined by the, preferably self-contained, ring can preferably define the fastening device.
- the tensioning element can be passed through the opening of the ring and secured by means of an anchor whose dimensions are larger than the dimensions of the cross section of the opening of the ring.
- the adapter element can be used as a Segment ring can be formed consisting of at least two ring segments. These at least two segment rings can preferably be put together during assembly in such a way that the lower end of the clamping element can be easily inserted and fastened.
- the design of the adapter element from at least two ring segments is particularly advantageous in that the ring segments are preferably easy to manufacture and/or easy to transport and/or arrange and thereby preferably also simple fastening and tensioning of the clamping elements can be ensured.
- the adapter element can preferably be designed as a cylinder, truncated pyramid, truncated cone or the like. It is particularly preferred that the adapter element can be arranged and fastened on the top of the anchor section.
- the adapter element can have a side wall, which preferably forms a lateral surface, which extends from the underside of the adapter element to the upper side of the adapter element and comprises a collar, preferably on the upper side of the adapter element, which preferably projects radially inwards from the side wall.
- the collar may preferably extend substantially orthogonally from the top of the adapter element and form a projection.
- a height of a side wall can be greater than a height of the collar, particularly preferably the height of the side wall can be greater than the height of the collar and less than twice the height of the collar.
- the height of the side wall can be at least twice, three times or four times as great as the height of the collar.
- the configuration of the sidewall and the collar may preferably define a cavity that defines the fastening device.
- the adapter element extends essentially rod-shaped from its underside to its upper side.
- a console can be formed on the top of the rod-shaped base body, which preferably extends from the rod-shaped base body to its end face.
- the rod-shaped base body can extend orthogonally to the surface of the foundation or the anchor section.
- the console can preferably extend orthogonally to the rod-shaped base body.
- the fastening device can preferably be formed by a recess, preferably a passage, which is preferably formed within the rod-shaped base body and/or the console.
- the fastening device can pass through a space between a first console, preferably the end face of the first console, a first rod-shaped adapter element and a second console, preferably the Front side of the second console, a second rod-shaped adapter element arranged at a distance from the first rod-shaped adapter element can be defined.
- the fastening device extends essentially in the vertical direction from an upper side of the adapter element through the adapter element and/or into an interior of the adapter element.
- the fastening device can therefore extend orthogonally to the top of the adapter element and/or to the bottom of the adapter element.
- the fastening device can be designed as a recess, in particular as a through opening.
- the fastening device can be defined by optionally the cavity and/or optionally the intermediate space and/or the recess.
- a first attachment portion may form a passage from the top of the adapter element to a second attachment portion.
- the first fastening section can have a dimension in order to carry out clamping elements.
- the second fastening portion may preferably be formed either in the interior of the adapter element and have a dimension adapted to fasten a clamping element, preferably by means of an anchor.
- the second fastening section can preferably be formed on the underside of the adapter element and the clamping element can preferably be fastened by means of an anchor.
- the fastening device extends essentially in a vertical direction into an interior of the adapter element.
- the fastening device extends essentially in the vertical direction from an upper side of the adapter element through the adapter element.
- the anchor section comprises a connection element which is designed to interact with the connection device.
- threaded rods or other tendons can particularly preferably be integrated into the foundation, i.e. preferably be concreted into the foundation and/or anchored in the foundation and preferably protrude upwards from the surface of the foundation.
- a foundation basket can preferably be integrated into the foundation and the Include threaded stands or the other tendons to connect the adapter element to the foundation cage.
- the threaded studs or the other tendons can preferably be pulled through the connecting device, which is preferably designed as a passage from the bottom of the adapter element to the top of the adapter element, and can preferably be fastened to the top of the adapter element and/or preferably screwed.
- This configuration allows the adapter element to be connected to the foundation in a particularly simple and cost-effective manner and, in particular, to be securely secured against displacement, for example.
- a particularly reliable connection of the adapter element to the anchor section plays a crucial role, particularly when bracing the wind turbine tower. In particular, this allows the foundation to be made significantly flatter.
- a further advantage is that the design of the foundation cage and/or the threaded supports or other tendons integrated in the foundation can be adapted to an area of the anchor section.
- connection device can be formed on the side wall or the rod-shaped base body of the adapter element and preferably extend from the bottom to the top of the adapter element.
- connection device can preferably be set up to cooperate with the anchor section and to preferably fasten the adapter element in a stationary manner to the foundation.
- the adapter element has two, three or more connection devices. This ensures a particularly reliable, stationary attachment of the adapter element to the anchor section and protects it against unwanted displacement due to the forces that occur.
- the anchor section comprises one, two, three or more connection elements which are designed to interact with the connection device.
- Preferably one, two, three or more connection elements can be provided per connection device.
- the adapter element can be fastened particularly reliably to the anchor section and/or, if necessary, the tensioning element can be prestressed by means of the adapter element.
- the foundation comprises reinforced concrete and/or prestressed concrete or consists entirely or partially of reinforced concrete and/or prestressed concrete.
- the adapter element comprises reinforced concrete and/or prestressed concrete or consists entirely or partially of reinforced concrete and/or prestressed concrete. It is particularly preferred that the adapter element is made of steel or as a prefabricated reinforced concrete and/or prestressed concrete part.
- a first clear distance between an underside of the fastening device and the anchor section is dimensioned such that an anchor of the tensioning element can be arranged there and/or a second clear distance between an underside of the adapter element and the anchor section is dimensioned such that there an anchor of the clamping element and/or a clamping tool for clamping the clamping element can be arranged.
- a tension anchor and/or a fixed anchor are preferably used.
- the tension anchor can preferably be connected to the fixed anchor at another point in the structure via one or more tensioning elements and can preferably apply tensile stress to a component or between components of a structure, such as between tower segments, by applying tensile stress between the tension anchor and the fixed anchor of a tower, in particular a wind turbine tower.
- a tension anchor can have attack means for attaching the tensioning tool and is in particular designed to move a tension strand against the tension anchor and thus place it under tension.
- a fixed anchor is preferably used to hold one or more tension cords to the fixed anchor.
- a fixed anchor can be fixed at a suitable location on the structure and preferably does not require any functional means to change or increase the tensile stress of a tension cord.
- the anchoring and/or prestressing of the tendons can preferably be carried out at the upper end or at the lower end of the tower using the tension anchor.
- the first clear distance and/or the second clear distance can each be measured from the top of the anchor section.
- the tensioning element can be fastened in the anchor by means of a wedge. Through this Design ensures accessibility of the fixed anchor and/or the tension anchor and simplifies both assembly and maintenance work.
- a further preferred development of the foundation arrangement is characterized by a deflection device for deflecting a clamping element in the direction of the fastening device.
- This configuration is particularly advantageous if internal bracing and/or external bracing is to take place near the tower wall.
- the deflection device can comprise a first deflection unit and a second deflection unit, wherein preferably the first deflection unit is arranged essentially in the vertical direction, preferably centered, above the fastening device and is designed to deflect a clamping element which protrudes in the vertical direction from the adapter element , so that this preferably extends essentially horizontally in the direction of the tower wall.
- the second deflection unit can preferably be provided, which is designed to deflect the clamping element in such a way that the angle of inclination of the clamping element corresponds to the angle of inclination of the wind turbine tower and/or the clamping element runs essentially parallel to the tower wall.
- the adapter element can be arranged at a distance from the tower wall and thus clamping elements can be fastened and/or prestressed further inside, while at the same time the transfer of the clamping force to the tower wall advantageously takes place further out in the radial direction.
- an adapter element for a foundation arrangement is described with a fastening device for fastening a lower end of a tensioning element for prestressing a tower for a wind turbine, and with a connection device for connecting the adapter element to an anchor section of a foundation.
- a clamping device for a tower of a wind turbine comprising an adapter element and / or a foundation arrangement and a clamping element, the lower end of which is attached to the fastening device and the upper end of which can be attached to an upper end of the tower.
- a tensioning force can be transmitted to the fastening device and/or via the fastening device to the adapter element and/or via the adapter element to the foundation, in particular the anchor section.
- a tower for a wind turbine comprising a clamping device and/or an adapter element and/or a foundation arrangement, wherein a tower wall is arranged on the anchor section.
- a wind turbine comprising a tower and/or an adapter element and/or a foundation arrangement.
- a method for producing a foundation arrangement for a wind turbine comprising the steps: producing a foundation with a support section and an anchor section and producing or providing an adapter element that can be arranged on the anchor section with a fastening device for fastening a lower end of a clamping element Prestressing of a tower for a wind turbine, and with a connection device for connecting the adapter element to the anchor section of the foundation.
- the foundation and the adapter element can be manufactured or provided simultaneously or continuously.
- the foundation can be cast on site, preferably from in-situ concrete, particularly preferably in one piece.
- the adapter element can be provided as a finished part or semi-finished part and, after the foundation has been cast and hardened, can be arranged and fastened on the anchor section provided for this purpose.
- the method for producing a foundation arrangement for a wind turbine can preferably be developed by preferably transporting an adapter element from a manufacturing point to an assembly point.
- a further preferred development of the method is characterized in that producing a foundation includes providing a connection element that is designed to interact with a connection device.
- the foundation can be designed in such a way that in the area of the anchor section, the connecting element, preferably in the form of connecting reinforcement, i.e. threaded rods or other tendons, protrudes from an interior of the foundation, preferably essentially orthogonally from an upper side of the foundation.
- the connecting element preferably in the form of connecting reinforcement, i.e. threaded rods or other tendons, protrudes from an interior of the foundation, preferably essentially orthogonally from an upper side of the foundation.
- a method for prestressing a tower of a wind turbine comprising the steps: providing a clamping device with a foundation arrangement and a clamping element, attaching a lower end of a clamping element to a fastening device of the adapter element, attaching an upper end of a clamping element an upper end of the tower and tensioning the clamping element at the lower end of the clamping element and / or at the upper end of the clamping element.
- the lower end of the clamping element can be pulled through a recess and secured with wedges by means of a clamping anchor underneath.
- the upper end of the clamping element can be attached to the upper end of the tower and then the clamping element can be attached to the lower end of the clamping element and preferably clamped.
- the lower end of the clamping element can preferably be attached to the lower end of the tower in a first step and then the clamping element can be attached to the upper end of the tower and preferably tensioned.
- the lower and upper ends of the Clamping element preferably takes place simultaneously or continuously, with the clamping preferably only taking place after both ends have been fastened.
- the tensioning of the tensioning element includes placing a tensioning tool on a tensioning anchor arranged at an upper end of the tensioning element and/or applying a tensioning tool on a tensioning anchor arranged on a lower end of the tensioning element.
- a first step it can be tensioned at the top and/or bottom.
- this clear distance there is a clear distance between the anchor section and the adapter element, in particular an upper side of the anchor section and an underside of the adapter element, before the tensioning element is tensioned, which is reduced after the tensioning element has been tensioned.
- this clear distance can optionally be reduced to zero.
- a spacer is inserted, preferably temporarily, between the anchor section and the adapter element.
- a further preferred development of the method is characterized in that the reduction of the clear distance between the anchor section of the foundation and the adapter element is preferably carried out by means of the connection elements and preferably the connection device and/or a height of the spacer is preferably variable and/or the spacer is preferably is removed before tensioning the clamping element.
- Fig. 1 shows a schematic, three-dimensional view of a wind turbine.
- the wind turbine 100 has a tower 102 and a nacelle 104 on the tower 102.
- An aerodynamic rotor 106 with three rotor blades 108 and a spinner 110 is provided on the nacelle 104.
- the aerodynamic rotor 106 is caused to rotate by the wind during operation of the wind turbine and thus also rotates an electrodynamic rotor or rotor of a generator, which is directly or indirectly coupled to the aerodynamic rotor 106.
- the electrical generator is arranged in the nacelle 104 and generates electrical energy.
- the pitch angles of the rotor blades 108 can be changed by pitch motors on the rotor blade roots of the respective rotor blades 108.
- the tower 102 of the wind turbine 100 has a foundation arrangement as part of a tensioning system as described herein.
- the Figures 2 , 3 and 4 show a foundation arrangement 200 for a wind turbine tower with a foundation 201 that has an anchor section 202 and a support section 203 spaced from the anchor section 202.
- a tower wall 1020 is arranged on the support section 203, which is designed as a tower wall contact surface.
- the foundation 201 has a foundation basket 200 with connecting elements 2001, which extend from the foundation basket 200 from the interior of the foundation 201 to a surface of the foundation 201 and protrude vertically from this surface.
- These connection elements 2001 define the anchor section 202 of the foundation 201.
- the connection elements 2001 are designed to interact with a connection device 2022 of the adapter element 2020.
- the adapter element 2020 includes a connection device 2022, which extends from an upper side 2020b of the adapter element 2020 to a lower side 2020a of the adapter element 2020 and is designed as a type of through opening.
- the adapter element 2020 is placed on the anchor section 202 in such a way that the connection elements 2001 are passed through the connection device 2022 and fastened to a top side 2020b of the adapter element 2020.
- the adapter element 2020 is designed as a truncated cone and includes a side wall that extends from the bottom 2020a of the adapter element 2020 to the top 2020a of the adapter element 2020 and includes a collar 2025 projecting radially inwards from the side wall.
- the sidewall and collar 2025 define a cavity inside the adapter element. This cavity is designed as a passage and extends in the vertical direction from the top 2020b of the adapter element 2020 through the adapter element 2020.
- the cavity comprising a first fastening section 2021a and a second fastening section 2021b defines the fastening device 2021.
- the side wall has approximately a double as high as the collar 2025.
- the first fastening section 2021a extends from the top 2020b of the adapter element 2020 to the second fastening section 2021b and defines a passage that has a diameter to enable the clamping elements 303 to be passed through.
- the first fastening section 2021a is defined by the collar 2025.
- the second fastening section 2021b extends between the first fastening section 2021a and the underside 2020a of the adapter element 2020.
- a diameter of the second fastening section 2021b is larger than a diameter of the first fastening section 2021a, around an anchor 301, in which the clamping elements 303 are fastened by means of wedges 302 to anchor reliably.
- Two clamping elements 303 are passed through the first fastening section 2022a.
- the clamping elements 303 each have a wedge 302 in order to anchor them in an anchor 301.
- the second fastening section 2022b has a height that is greater than a height of the anchor 301 with the wedges 302 fastened therein.
- Figure 2 shows an external bracing of the wind turbine tower in an interior of the tower.
- the clamping elements 303 anchored in the adapter element 2020 extend essentially parallel to one another in the vertical direction from an adapter element 2020 to an upper end of the tower (not shown here).
- a first deflection unit 401 is arranged in the vertical direction centered above the fastening device and spaced from the adapter element.
- This deflection unit 401 is designed to deflect the clamping element 303, which protrudes in the vertical direction from the top 2020b of the adapter element 2020, so that it is deflected by approximately 90 ° in the direction of the tower wall 1020 and extends horizontally in the direction of the tower wall 1020.
- a second deflection unit 402 is arranged on the tower wall 1020 and extends partially into an interior of the tower wall 1020, so that the clamping element 303 is deflected in such a way that it runs within the tower wall in the direction of the upper end of the tower wall (not shown here).
- the clamping element 303 extends essentially parallel to the outer side and the inner side of the tower wall 1020.
- FIG 4 shows a further embodiment variant a foundation arrangement 200.
- the basic structure of the adapter element corresponds to the structure in Figure 2 and 3 embodiments shown.
- the adapter element 2020 is arranged on a spacer 2026.
- a bottom side of the spacer 2026 is arranged on a top side of the anchor section 202, with the bottom side 2020a of the adapter element 2020 being arranged on the top side of the spacer 2026.
- This embodiment variant has an advantage particularly in a method for prestressing the tower. After attaching the clamping elements 303 to a lower end and an upper end of the tower, the spacers 2026 can, for example, be removed or reduced in size.
- the adapter element 2020 can be moved in the direction of gravity, i.e. in the direction of the anchor section 202, and fastened by means of the connection elements 2001 fastened in the connection device 200, so that the tensioning device is tensioned.
- FIGS. 5 and 6 each show different arrangement variants and design variants of the adapter elements 2020 on the anchor section 202, which is formed within a self-contained, circumferential support section 203.
- Figure 5 shows a ring arrangement consisting of several individual adapter elements 2020 in the form of ring segments. These ring segments are arranged at a radial distance from the support section 203 and are assembled in such a way that a circumferential adapter ring is formed. Particularly preferably, each ring segment can be manufactured as a finished part or a semi-finished part, so that particularly simple assembly is possible.
- the individual adapter elements 2020 each include four connection devices 2022 and two individual fastening devices 2021.
- each adapter element 2020 includes four connection devices 2022 and a fastening device 2021.
- the foundation arrangement, the adapter element and the foundation have various advantages.
- adapter elements can be manufactured inexpensively, in particular prefabricated, and easily transported.
- the foundation can also be made flatter and less complex, so that both working time and costs can be saved.
- the service life of a wind turbine tower can be extended because adapter elements and/or clamping elements can be easily replaced if they are damaged.
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Description
Die Erfindung betrifft ein Verfahren zum Vorspannen eines Turms einer Windenergieanlage.The invention relates to a method for prestressing a tower of a wind turbine.
Spannbetonbauwerke, insbesondere im Bereich der Spannbetontürme, wie zum Beispiel ein Turm einer Windenergieanlage, werden mit Spannelementen durch Aufbringen einer Zugkraft verspannt und versteift. Türme umfassen oftmals eine Anzahl von zusammengesetzten Turmsegmenten. Hierbei können ein einzelnes Turmsegment oder ein erstes und ein zweites Turmsegment oder die Anzahl von Turmsegmenten für sich allein oder untereinander unter Zugspannung versetzt werden. Hierzu werden die Spannelemente entsprechend am Turm, zum Beispiel am Turmfuß oder Fundament und an der Turmwandung verankert, um den Turm über die Höhe vorzuspannen. Die Spannelemente können in der Turmwandung verlaufen, was auch als interne Vorspannung bezeichnet wird. Hierzu werden beim Betonieren meist leere Hülsen einbetoniert, durch die später die Spannelemente gezogen werden. Alternativ können die Spannglieder auch außerhalb der Turmwandung, beispielsweise auf der Turminnenseite, verlaufen, was auch als externe Vorspannung bezeichnet wird. Die Verankerung der Spannelemente kann beispielsweise über einen Festanker und einen Spannanker erfolgen.Prestressed concrete structures, especially in the area of prestressed concrete towers, such as a tower of a wind turbine, are braced and stiffened with tensioning elements by applying a tensile force. Towers often include a number of assembled tower segments. Here, a single tower segment or a first and a second tower segment or the number of tower segments can be placed under tension alone or among each other. For this purpose, the tensioning elements are anchored accordingly on the tower, for example on the tower base or foundation and on the tower wall, in order to pre-stress the tower over the height. The tensioning elements can run in the tower wall, which is also referred to as internal prestressing. For this purpose, empty sleeves are usually concreted in when concreting, through which the clamping elements are later pulled. Alternatively, the tendons can also run outside the tower wall, for example on the inside of the tower, which is also referred to as external prestressing. The tensioning elements can be anchored, for example, using a fixed anchor and a tensioning anchor.
Aus
Hierbei ist vorgesehen, dass das Spannstahlelement mittels an dem Turm angeordneter Spanntaschen fixiert ist.It is provided here that the prestressing steel element is fixed by means of clamping pockets arranged on the tower.
In
In der
Existierende Lösungen ermöglichen eine gute Vorspannung von Spannelementen, insbesondere von Türmen von Windenergieanlagen, sind allerdings häufig teure und aufwändige Konstruktionen und von einer hohen technologischen Komplexität.Existing solutions enable good prestressing of tensioning elements, especially towers of wind turbines, but are often expensive and complex designs and have a high level of technological complexity.
Hinzukommen in der Regel hohe Herstellungs-, Montage und Wartungskosten. Insbesondere eine interne Vorspannung lässt sich häufig nicht oder nur mittels kostenintensiver technischer Mittel sowie einem relativen hohen Personal- und Zeiteinsatz anpassen und/oder korrigieren.In addition, there are usually high manufacturing, assembly and maintenance costs. In particular, internal preloading can often not be adjusted and/or corrected, or can only be adjusted and/or corrected using cost-intensive technical means and a relatively high level of personnel and time commitment.
Das Deutsche Patent- und Markenamt hat in der Prioritätsanmeldung zu vorliegender Anmeldung folgenden Stand der Technik recherchiert:
Der Erfindung liegt daher die Aufgabe zu Grunde, wenigstens eines der genannten Probleme zu adressieren. Insbesondere ist es eine Aufgabe der vorliegenden Erfindung eine Lösung bereitzustellen, die eine zuverlässige und/oder kostengünstige Vorspannung eines Spannbetonbauwerks, insbesondere eines Turms einer Windenergieanlage, ermöglicht. Ferner ist es insbesondere eine Aufgabe der vorliegenden Erfindung, eine Vorspannung eines Spannbetonbauwerks, insbesondere eines Turms einer Windenergieanlage, mittels einfach herstellbarer und/oder einfach montierbarer und/oder einfach austauschbarer Mittel zu gewährleisten. Zumindest soll zu bisher bekannten Lösungen eine alternative Lösung gefunden werden.The invention is therefore based on the object of addressing at least one of the problems mentioned. In particular, it is an object of the present invention to provide a solution that enables reliable and/or cost-effective prestressing of a prestressed concrete structure, in particular a tower of a wind turbine. Furthermore, it is a particular object of the present invention to ensure prestressing of a prestressed concrete structure, in particular a tower of a wind turbine, by means of means that are easy to manufacture and/or easy to assemble and/or easy to replace. At least an alternative solution to previously known solutions should be found.
Diese Aufgabe wird gelöst durch ein Verfahren gemäß Anspruch 1. Vorteilhafte Ausgestaltungen sind in den Unteransprüchen beschrieben.This task is solved by a method according to claim 1. Advantageous embodiments are described in the subclaims.
Gemäß einem ersten Aspekt wird beschrieben eine Fundamentanordnung für einen Turm einer Windenergieanlage, umfassend ein Fundament mit einem Ankerabschnitt und einem Tragabschnitt zum Tragen einer Turmwandung sowie ein Adapterelement mit einer Befestigungseinrichtung zur Befestigung eines unteren Endes eines Spannelements zur Vorspannung eines Turms für eine Windenergieanlage, und mit einer Anschlusseinrichtung zum Anschließen des Adapterelements an den Ankerabschnitt des Fundaments.According to a first aspect, a foundation arrangement for a tower of a wind turbine is described, comprising a foundation with an anchor section and a support section for supporting a tower wall and an adapter element with a fastening device for fastening a lower end of a tensioning element for pre-stressing a tower for a wind turbine, and with a connection device for connecting the adapter element to the anchor section of the foundation.
Der Erfindung liegt die Erkenntnis zugrunde, dass in existierenden Lösungen zum Verankern und/oder Vorspannen am Fundament meist ein Fundamentkeller unterhalb des Fundaments ausgebildet wird, um die gespannten Spannglieder beispielsweise mittels eines Spannanker an beispielsweise einer Decke des Fundamentkellers zu befestigen. Typischerweise werden die Spannglieder durch eine entsprechende Öffnung in der Kellerdecke durchgeführt, von einer hydraulischen Stempelvorrichtung gespannt und sodann mittels des Spannankers gegen die Decke befestigt. Hierbei kann eine zuverlässige Vorspannung erreicht werden. Diese geht jedoch mit hohen Montagekosten sowie einem großen Arbeitsaufwand einher.The invention is based on the knowledge that in existing solutions for anchoring and/or prestressing on the foundation, a foundation cellar is usually formed below the foundation in order to fasten the tensioned tendons to, for example, a ceiling of the foundation cellar by means of a tensioning anchor. Typically the tendons are connected through a corresponding opening in the The basement ceiling is carried out, tensioned by a hydraulic ram device and then secured to the ceiling using the tension anchor. A reliable preload can be achieved here. However, this is accompanied by high assembly costs and a lot of work.
In der hier beschriebenen Lösung dient das Adapterelement zur Vorspannung und/oder Verankerung von Spannelementen des Turms der Windenergieanlage, insbesondere zum Aufbringen einer externen und/oder internen Spannkraft auf den Turm der Windenergieanlage. Hierzu weist das Adapterelement eine Befestigungseinrichtung auf, an welcher das untere Ende des Spannelements befestigt und vorzugsweise verspannt und/oder verankert werden kann. Ein oberes Ende des Spannelements kann vorzugsweise an einem oberen Ende eines Windenergieanlagen-Turms befestigt und vorzugsweise verankert werden. Das Verspannen des Spannelements kann vorzugsweise am unteren und/oder oberen Ende des Windenergieanlagen-Turms erfolgen. Hierzu kann beispielsweise ein Spannwerkzeug an einem Ende des Spannelements angesetzt werden.In the solution described here, the adapter element is used to pretension and/or anchor tensioning elements of the tower of the wind turbine, in particular to apply an external and/or internal tension force to the tower of the wind turbine. For this purpose, the adapter element has a fastening device to which the lower end of the clamping element can be fastened and preferably clamped and/or anchored. An upper end of the tensioning element can preferably be attached and preferably anchored to an upper end of a wind turbine tower. The tensioning of the tensioning element can preferably take place at the lower and/or upper end of the wind turbine tower. For this purpose, for example, a clamping tool can be attached to one end of the clamping element.
Das Adapterelement ist vorzugsweise auf dem Ankerabschnitt des Fundaments anordenbar und mittels einer Anschlusseinrichtung an dem Ankerabschnitt des Fundaments vorzugsweise ortsfest befestigbar. Hierbei ist der Ankerabschnitt ausgebildet, um mit der Anschlusseinrichtung des Adapterelements zusammenzuwirken. Der Ankerabschnitt kann insbesondere als ein Teil der Oberseite des Fundaments ausgebildet sein und sich vorzugsweise von der Oberseite des Fundaments in das Innere des Fundaments erstrecken. Vorzugsweise kann das Adapterelement auf dem Ankerabschnitt angeordnet werden, so dass eine Verankerung und/oder Verspannung der Spannelemente vorzugsweise auf oder oberhalb einer Oberseite des Fundaments erfolgen und ein Fundamentkeller entfallen kann.The adapter element can preferably be arranged on the anchor section of the foundation and can preferably be fastened in a stationary manner to the anchor section of the foundation by means of a connecting device. Here, the anchor section is designed to interact with the connection device of the adapter element. The anchor section can in particular be designed as a part of the top of the foundation and preferably extend from the top of the foundation into the interior of the foundation. Preferably, the adapter element can be arranged on the anchor section, so that anchoring and/or bracing of the tensioning elements can preferably take place on or above an upper side of the foundation and a foundation basement can be omitted.
Darüber hinaus weist das Fundament vorzugswese einen Tragabschnitt auf, der als eine Aufstandsfläche für eine Turmwandung ausgebildet ist. Insbesondere kann der Tragabschnitt ausgebildet sein, um ein unteres Turmsegment aufzunehmen und zu befestigen. Vorzugsweise kann eine Turmwandung oder ein unteres Turmsegment auf dem Tragabschnitt angeordnet werden, Der Tragabschnitt kann insbesondere als ein Teil der Oberseite des Fundaments ausgebildet sein und sich vorzugsweise von der Oberseite des Fundaments in das Innere des Fundaments erstrecken.In addition, the foundation preferably has a support section which is designed as a contact area for a tower wall. In particular, the support section can be designed to accommodate and fasten a lower tower segment. Preferably, a tower wall or a lower tower segment can be arranged on the support section. The support section can in particular be designed as a part of the top of the foundation and preferably extend from the top of the foundation into the interior of the foundation.
Fundamentanordnungen mit einem Fundament und einem Adapterelement zum Vorspannen eines Windenergieanlagen-Turms deutlich kostengünstiger hergestellt und/oder montiert werden können, als bekannte Lösungen zum Vorspannen eines Windenergieanlagen-Turms, wie zum Beispiel mit einem Fundamentkeller. Mithin können Fundamente flacher ausgestaltet und dadurch Materialkosten eingespart werden. Ferner können durch derartige Adapterelemente Windenergieanlagentürme auch insgesamt kostengünstiger und/oder mit höherer Zuverlässigkeit verspannt werden.Foundation arrangements with a foundation and an adapter element for prestressing a wind turbine tower are manufactured much more cost-effectively and/or can be mounted, as known solutions for prestressing a wind turbine tower, such as with a foundation cellar. This means that foundations can be made flatter, thereby saving material costs. Furthermore, such adapter elements can also be used to clamp wind turbine towers more cost-effectively and/or with greater reliability overall.
Das Adapterelement kann vorzugsweise in dem Inneren des Windenergieanlagen-Turms angeordnet werden. In dieser Ausgestaltung sind Adapterelemente vorzugsweise an einer Außenumfangsfläche des Turms nicht sichtbar. Ferner ermöglicht die Anordnung von vorzugsweise individuellen Adapterelementen eine größere Flexibilität hinsichtlich der Innenraumgestaltung im Turm. Beispielsweise können bestimmte Bereiche der Fundamentoberfläche im Turminneren freigehalten werden für Einbauten, wie beispielsweise Leitungen, Aufstiegshilfen oder dergleichen.The adapter element can preferably be arranged in the interior of the wind turbine tower. In this embodiment, adapter elements are preferably not visible on an outer peripheral surface of the tower. Furthermore, the arrangement of preferably individual adapter elements enables greater flexibility with regard to the interior design in the tower. For example, certain areas of the foundation surface inside the tower can be kept free for installations, such as lines, climbing aids or the like.
Alternativ kann das Adapterelement vorzugsweise außerhalb des Turms angeordnet werden, um von außen zugänglich zu sein. Auch eine Kombination von Adapterelementen außerhalb und innerhalb der Turmwandung kann bevorzugt sein.Alternatively, the adapter element can preferably be arranged outside the tower in order to be accessible from the outside. A combination of adapter elements outside and inside the tower wall can also be preferred.
Ein weiterer Vorteil der Fundamentanordnung mit dem an dem Ankerabschnitt des Fundaments befestigten Adapterelement ist, dass ein Fundament geringerer Komplexität eingesetzt werden kann, was den technologischen Aufwand und den Kostenaufwand der Herstellung des Fundaments reduziert. Ferner können sowohl die Wartung als auch die Instandhaltung der Vorspannung des Windenergieanlagen-Turms erleichtert werden.A further advantage of the foundation arrangement with the adapter element attached to the anchor section of the foundation is that a foundation of less complexity can be used, which reduces the technological effort and the cost of producing the foundation. Furthermore, both the maintenance and the maintenance of the prestressing of the wind turbine tower can be facilitated.
Vorteilhaft ist ferner, dass bereits sich im Betrieb befindliche Windenergieanlagen-Türme sowohl mit einer internen und/oder externen Vorspannung mit dem Adapterelement nachgerüstet werden können. Insbesondere können auch Windenergieanlagen-Türme mit einer beispielsweise beschädigten und/oder einer für eine veränderte Belastungssituation nicht ausreichenden Anzahl an Spannelementen mit dem Adapterelement und weiteren Spannelementen nachgerüstet und so weiter betrieben werden.It is also advantageous that wind turbine towers that are already in operation can be retrofitted with both an internal and/or external preload with the adapter element. In particular, wind turbine towers with, for example, a damaged number of clamping elements and/or an insufficient number of clamping elements for a changed load situation can also be retrofitted with the adapter element and further clamping elements and so continued to be operated.
Das Fundament kann vorzugsweise in einen Bodenaushub eingelassen sein, wobei insbesondere bevorzugt die Fundamentoberseite im Wesentlichen auf einem Bodenniveau liegt und vorzugsweise eben und/oder zumindest nicht gekrümmt ausgebildet ist. Vorzugsweise kann das Fundament zumindest einen erhöhten Abschnitt, dessen Oberseite oberhalb des Bodenniveaus liegt, und/oder zumindest einen niedrigeren Abschnitt, dessen Oberseite unterhalb des Bodenniveaus liegt, aufweisen. Der Tragabschnitt kann insbesondere bevorzugt von dem Ankerabschnitt beabstandet oder an diesen angrenzend ausgebildet sein. Insbesondere bevorzugt können der Tragabschnitt und der Ankerabschnitt von einer vertikalen Längsachse des Windenergieanlagen-Turms unterschiedlich beabstandet sein. Vorzugsweise kann der Ankerabschnitt in radialer Richtung einen größeren und/oder kleineren Abstand zur vertikalen Längsachse des Windenergieanlagen-Turms aufweisen als der Tragabschnitt. Das Adapterelement kann also im Vergleich zur Turmwandung weiter innen und/oder weiter außen angeordnet sein.The foundation can preferably be embedded in an excavated soil, with the top of the foundation particularly preferably lying essentially at ground level and preferably being flat and/or at least not curved. Preferably, the foundation can have at least one elevated section, the top of which is above the ground level, and/or at least one lower section, the top of which is below the ground level. The Support section can particularly preferably be spaced apart from the anchor section or be formed adjacent to it. Particularly preferably, the support section and the anchor section can be spaced differently from a vertical longitudinal axis of the wind turbine tower. Preferably, the anchor section can have a larger and/or smaller distance from the vertical longitudinal axis of the wind turbine tower in the radial direction than the support section. The adapter element can therefore be arranged further inside and/or further outside in comparison to the tower wall.
Vorzugsweise kann der Tragabschnitt ringförmig, insbesondere bevorzugt an eine Form der Turmwandung des Windenergieanlage-Turms angepasst, sein. Windenergieanlagen-Türme weisen in der Regel einen ringförmigen Querschnitt orthogonal zu der vertikalen Längsachse auf. Dieser ringförmige Querschnitt kann kreisringförmig ausgebildet sein oder auch eine polygonale Form aufweisen. Unter dem Begriff ringförmig ist daher vorliegend nicht nur eine kreisringförmige Ausgestaltung zu verstehen, sondern auch eine polygonale und/oder mehreckige Ausgestaltung mit mehreren geraden Abschnitten. Der Ankerabschnitt kann also insbesondere innerhalb des in sich geschlossenen, umlaufenden Tragabschnitts und/oder außerhalb des in sich geschlossenen, umlaufenden Tragabschnitts ausgebildet sein.Preferably, the support section can be annular, particularly preferably adapted to a shape of the tower wall of the wind turbine tower. Wind turbine towers generally have an annular cross section orthogonal to the vertical longitudinal axis. This annular cross section can be circular or have a polygonal shape. In the present case, the term annular is therefore not only understood to mean an annular configuration, but also a polygonal and/or polygonal configuration with several straight sections. The anchor section can therefore be formed in particular within the self-contained, circumferential support section and/or outside the self-contained, circumferential support section.
Das Adapterelement kann vorzugsweise auf dem Ankerabschnitt, also auf der Oberseite des Fundaments, angeordnet und befestigt sein. Die Befestigung des Adapterelements an dem Ankerabschnitt kann beispielsweise mittels einer Klebe- bzw. Verbinderschicht erfolgen.The adapter element can preferably be arranged and fastened on the anchor section, i.e. on the top of the foundation. The adapter element can be attached to the anchor section, for example, by means of an adhesive or connector layer.
Die Unterseite des Adapterelements kann sich vorzugsweise in ein Inneres des Ankerabschnitts, also in ein Inneres des Fundaments, erstrecken und dort befestigt, insbesondere einbetoniert, sein.The underside of the adapter element can preferably extend into an interior of the anchor section, i.e. into an interior of the foundation, and be fastened there, in particular embedded in concrete.
Alternativ hierzu kann die Unterseite des Adapterelements auch auf einem Abstandshalter angeordnet und vorzugsweise befestigt sein, wobei vorzugsweise der Abstandshalter auf dem Ankerabschnitt angeordnet und vorzugweise befestigt ist. Insbesondere bevorzugt kann das Adapterelement auf dem Abstandshalter sowie der Abstandshalter auf dem Ankerabschnitt lösbar befestigt sein. Beispielsweise kann der Abstandshalter auf dem Ankerabschnitt angeordnet und vorzugsweise mittels einer Gewichtskraft des Adapterelements befestigt sein. Der Abstandshalter kann als zwei, drei oder mehrere voneinander beabstandete, vorzugsweise gleichmäßig voneinander beabstandete, Hocker oder ein in sich geschlossener Ring, insbesondere an eine Form die Unterseite des Adapterelements angepasst, ausgebildet sein.Alternatively, the underside of the adapter element can also be arranged and preferably fastened on a spacer, the spacer preferably being arranged and preferably fastened on the anchor section. Particularly preferably, the adapter element can be releasably attached to the spacer and the spacer to the anchor section. For example, the spacer can be arranged on the anchor section and preferably fastened by means of a weight of the adapter element. The spacer can be used as two, three or more spaced apart, preferably evenly spaced, stools or a self-contained ring, in particular adapted to a shape of the underside of the adapter element, may be formed.
Vorzugsweise können zwei, drei oder mehrere Spannelemente vorgesehen sein, die vorzugsweise parallel zu einer Richtung, vorzugsweise parallel zu einer Längsachse des Windenergieanlagen-Turms, verlaufen. Die Spannelemente können auch zur Längsachse des Windenergieanlagenturms geneigt sein. Vorzugsweise entspricht ein Neigungswinkel eines Spannelements dem Neigungswinkel des Windenergieanlagen-Turms, insbesondere einer inneren und/oder äußeren Seite der Wandung des Windenergieanlagen-Turms. Ferner kann das Spannelement vorzugsweise unterschiedliche Neigungswinkel aufweisen.Preferably, two, three or more clamping elements can be provided, which preferably run parallel to one direction, preferably parallel to a longitudinal axis of the wind turbine tower. The clamping elements can also be inclined to the longitudinal axis of the wind turbine tower. Preferably, an angle of inclination of a clamping element corresponds to the angle of inclination of the wind turbine tower, in particular an inner and/or outer side of the wall of the wind turbine tower. Furthermore, the clamping element can preferably have different angles of inclination.
Spannelemente sind vorzugsweise aus Stahl oder aus einem Stahl umfassenden Material gebildet. Insbesondere bevorzugt können Spannelemente aus Fasern bestehen oder Fasern umfassen, insbesondere Stahlfasern und/oder Kohlenstofffasern und/oder Aramidfasern und/oder Keramikfasern und/oder Naturfasern und/oder Glasfasern und/oder dgl. Spannelemente können beispielsweise Stangen umfassen und/oder stangenförmig ausgebildet sein. Spannelemente können Seile umfassen oder seilförmig ausgebildet sein. Spannelemente können Einlagen und/oder Litzen umfassen, wobei eine Litze vorzugsweise mehrere Drähte umfasst. Bevorzugt ist die Einlage von Litzen und/oder Drähten eingefasst. Ein Material der Einlage kann Kunststoff und/oder Stahl und/oder Natur- und/oder Kunstfasern umfassen, wobei die Einlage bevorzugt drahtartig und/oder seilartig und/oder stabartig und/oder faserartig und/oder stangenartig ausgebildet ist.Clamping elements are preferably made of steel or a material comprising steel. Particularly preferably, clamping elements can consist of fibers or include fibers, in particular steel fibers and/or carbon fibers and/or aramid fibers and/or ceramic fibers and/or natural fibers and/or glass fibers and/or the like. Clamping elements can, for example, comprise rods and/or be rod-shaped. Tensioning elements can include ropes or be rope-shaped. Tensioning elements can include inserts and/or strands, with one strand preferably comprising several wires. The insert is preferably surrounded by strands and/or wires. A material of the insert can comprise plastic and/or steel and/or natural and/or synthetic fibers, with the insert preferably being wire-like and/or rope-like and/or rod-like and/or fiber-like and/or rod-like.
Die Befestigungseinrichtung ist zum Befestigen des Spannelements, insbesondere zum Befestigen eines Anschlusskopfes, vorzugsweise in Form eines Keils, des Spannelements, ausgebildet. Die Befestigungseinrichtung ist vorzugsweise ausgebildet, um mit dem Spannelement vorzugsweise lösbar und/oder vorzugsweise vorgespannt verbunden zu werden. Das Spannelement ist vorzugsweise ausgebildet, um mit dem Anschlusskopf, insbesondere dem Keil, in der Befestigungseinrichtung vorzugsweise befestigt und/oder vorzugsweise vorgespannt verbunden zu werden. Hierbei kann der Anschlusskopf vorzugsweise mittels eines Ankers innerhalb der Befestigungseinrichtung vorzugsweise befestigt und/oder vorzugsweise vorgespannt verbunden zu werden.The fastening device is designed for fastening the clamping element, in particular for fastening a connection head, preferably in the form of a wedge, of the clamping element. The fastening device is preferably designed to be connected to the tensioning element in a preferably releasable and/or preferably prestressed manner. The clamping element is preferably designed to be connected to the connection head, in particular the wedge, in the fastening device, preferably fastened and/or preferably prestressed. Here, the connection head can preferably be fastened and/or preferably connected in a prestressed manner within the fastening device by means of an anchor.
Vorzugsweise weist das Adapterelement zwei, drei oder mehrere Spannelemente und/oder zwei, drei oder mehrere Befestigungseinrichtungen auf. Vorzugsweise ist die Anzahl der Spannelemente gleich der Anzahl der Befestigungseinrichtungen. Insbesondere bevorzugt sind zwei, drei oder mehrere Adapterelemente auf dem Ankerabschnitt und/oder auf zwei, drei oder mehreren Ankerabschnitten angeordnet, wobei vorzugsweise die Adapterelemente äquidistant, insbesondere in Umfangsrichtung, voneinander beabstandet, angeordnet sind.The adapter element preferably has two, three or more clamping elements and/or two, three or more fastening devices. Preferably, the number of clamping elements is equal to the number of fastening devices. Particularly preferred Two, three or more adapter elements are arranged on the anchor section and/or on two, three or more anchor sections, wherein preferably the adapter elements are arranged equidistantly, in particular in the circumferential direction, spaced apart from one another.
Das Vorspannen, insbesondere das Aufbringen einer Zugkraft, beispielsweise durch Spannelemente, kann auch als Verspannen bezeichnet werden. In der vorliegenden Anmeldung können die beiden Begriffe "Vorspannen" und "Verspannen" (und daraus abgeleitete Begriffspaare wie Vorspannung/Verspannung, vorgespannt/verspannt etc.) daher vorzugsweise als austauschbar und/oder synonym verstanden werden. Das Ermöglichen eines Aufbringens einer Zugkraft kann auch als Verankerung bezeichnet werden, Auch der Begriff "verankern" oder "Verankerung" kann hierin daher synonym verstanden werden.The prestressing, in particular the application of a tensile force, for example by clamping elements, can also be referred to as bracing. In the present application, the two terms “prestressing” and “bracing” (and pairs of terms derived therefrom such as prestressing/bracing, prestressed/stressed, etc.) can therefore preferably be understood as interchangeable and/or synonymous. Enabling the application of a tensile force can also be referred to as anchoring. The term “anchoring” or “anchoring” can therefore be understood as synonymous here.
Sofern auf die Anordnung des Adapterelements in Relation zu dem Windenergieanlagen-Turm Bezug genommen wird, beziehen sich Richtungsangeben, wie beispielsweise radial, in Umfangsrichtung, etc. vorzugsweise auf einen Turm, insbesondere auf eine im Wesentlichen vertikale Längsachse eines Turms, und beziehen sich auf jegliche Querschnittsformen eines solchen Turms, insbesondere sowohl auf kreisförmige Querschnitte als auch auf polygonale Querschnitte. Ferner vorzugsweise beziehen sich auch Angaben wie horizontal, vertikal, unten, oben, etc. ebenfalls auf einen Einbauzustand eines Windenergieanlagen-Turms. So bilden in der Regel das Fundament ein unteres Ende und eine Gondel ein oberes Ende eines Windenergieanlagen-Turms im Einbauzustand.If reference is made to the arrangement of the adapter element in relation to the wind turbine tower, directions, such as radial, circumferential, etc., preferably refer to a tower, in particular to a substantially vertical longitudinal axis of a tower, and refer to any Cross-sectional shapes of such a tower, in particular both circular cross-sections and polygonal cross-sections. Furthermore, information such as horizontal, vertical, bottom, top, etc. also preferably relate to an installed state of a wind turbine tower. As a rule, the foundation forms a lower end and a nacelle forms an upper end of a wind turbine tower when installed.
Die Erfindung ist nicht auf den Einsatz bei Windenergieanlage-Türmen beschränkt, auch wenn sie hier besonders vorteilhaft und auf wirtschaftliche Art und Weise eingesetzt werden kann. Vielmehr kann eine hier beschriebene Fundamentanordnung zum Vorspannen auch bei ähnlichen Belastungssituationen anderer Bauwerke, insbesondere Türmen anderer Art, eingesetzt werden.The invention is not limited to use in wind turbine towers, even if it can be used particularly advantageously and economically here. Rather, a foundation arrangement described here for prestressing can also be used in similar load situations of other structures, in particular towers of other types.
In einer besonders bevorzugten Ausführungsvariante der Fundamentanordnung ist vorgesehen, dass das Adapterelement ringförmig ausgebildet ist. Hierbei kann vorzugsweise ein Querschnitt der durch den, vorzugsweise in sich geschlossenen, Ring definierten Öffnung die Befestigungseinrichtung definieren. Vorzugsweise kann das Spannelement durch die Öffnung des Rings hindurchgeführt und mittels eines Ankers, dessen Abmessungen größer sind als die Abmessungen des Querschnitts der Öffnung des Rings, befestigt werden. Insbesondere bevorzugt kann das Adapterelement als ein Segmentring bestehend aus zumindest zwei Ringsegmenten ausgebildet sein. Diese zumindest zwei Segmentringe können vorzugsweise bei der Montage derart zusammengesetzt werden, dass das untere Ende des Spannelements leicht eingebracht und befestigt werden kann. Die Ausgestaltung des Adapterelements aus zumindest zwei Ringsegmenten ist insbesondere dahingehend vorteilhaft, dass die Ringsegmente vorzugsweise einfach herstellbar und/oder einfach transportierbar und/oder anordenbar sind und dadurch vorzugsweise auch eine einfache Befestigung und Verspannung der Spannelemente gewährleistet werden kann.In a particularly preferred embodiment variant of the foundation arrangement it is provided that the adapter element is annular. In this case, a cross section of the opening defined by the, preferably self-contained, ring can preferably define the fastening device. Preferably, the tensioning element can be passed through the opening of the ring and secured by means of an anchor whose dimensions are larger than the dimensions of the cross section of the opening of the ring. Particularly preferably, the adapter element can be used as a Segment ring can be formed consisting of at least two ring segments. These at least two segment rings can preferably be put together during assembly in such a way that the lower end of the clamping element can be easily inserted and fastened. The design of the adapter element from at least two ring segments is particularly advantageous in that the ring segments are preferably easy to manufacture and/or easy to transport and/or arrange and thereby preferably also simple fastening and tensioning of the clamping elements can be ensured.
Das Adapterelement kann vorzugsweise als ein Zylinder, Pyramidenstumpf, Kegelstumpf oder dergleichen ausgebildet sein. Hierbei ist besonders bevorzugt, dass das Adapterelement auf der Oberseite des Ankerabschnitts angeordnet und befestigt werden kann. Vorzugsweise kann das Adapterelement eine Seitenwand, die vorzugsweise eine Mantelfläche bildet, aufweisen, die sich von der Unterseite des Adapterelements zu der Oberseite des Adapterelements erstreckt und einen, vorzugsweise an der Oberseite des Adapterelements, von der Seitenwand vorzugsweise radial nach innen vorstehenden Kragen umfasst. Der Kragen kann sich vorzugsweise im Wesentlichen orthogonal von der Oberseite des Adapterelements erstrecken und einen Vorsprung bilden. Vorzugsweise kann hierbei eine Höhe einer Seitenwand größer sein als eine Höhe des Kragens, insbesondere bevorzugt kann die Höhe der Seitenwand größer als die Höhe des Kragens und kleiner als eine doppelte Höhe des Kragens sein. Vorzugsweise kann die Höhe der Seitenwand zumindest doppelt, dreifach oder vierfach so groß sein als die Höhe des Kragens. Die Ausgestaltung der Seitenwand und des Kragen können vorzugsweise einen Hohlraum definieren, der die Befestigungseinrichtung definiert.The adapter element can preferably be designed as a cylinder, truncated pyramid, truncated cone or the like. It is particularly preferred that the adapter element can be arranged and fastened on the top of the anchor section. Preferably, the adapter element can have a side wall, which preferably forms a lateral surface, which extends from the underside of the adapter element to the upper side of the adapter element and comprises a collar, preferably on the upper side of the adapter element, which preferably projects radially inwards from the side wall. The collar may preferably extend substantially orthogonally from the top of the adapter element and form a projection. Preferably, a height of a side wall can be greater than a height of the collar, particularly preferably the height of the side wall can be greater than the height of the collar and less than twice the height of the collar. Preferably, the height of the side wall can be at least twice, three times or four times as great as the height of the collar. The configuration of the sidewall and the collar may preferably define a cavity that defines the fastening device.
Alternativ kann es insbesondere bevorzugt sein, dass sich das Adapterelement von seiner Unterseite bis zu seiner Oberseite im Wesentlichen stabförmig erstreckt. Vorzugsweise kann an der Oberseite des stabförmigen Grundkörpers eine Konsole ausbildet sein, die sich vorzugsweise von dem stabförmigen Grundkörper bis zu ihrer Stirnseite erstreckt. Vorzugsweise kann sich der stabförmige Grundkörper orthogonal zu der Oberfläche des Fundaments bzw. des Ankerabschnitts erstrecken. Die Konsole kann sich vorzugsweise orthogonal zu dem stabförmigen Grundkörper erstrecken. Die Befestigungseinrichtung kann vorzugsweise durch eine Ausnehmung, vorzugsweise einen Durchgang, die vorzugsweise innerhalb des stabförmigen Grundkörpers und/oder der Konsole ausgebildet ist, ausgebildet sein. Ferner kann die Befestigungseinrichtung durch einen Zwischenraum zwischen einer ersten Konsole, vorzugsweise der Stirnseite der ersten Konsole, eines ersten stabförmigen Adapterelements und einer zweiten Konsole, vorzugsweise der Stirnseite der zweiten Konsole, eines von dem ersten stabförmigen Adapterelements beabstandet angeordneten zweiten stabförmigen Adapterelements definiert sein.Alternatively, it may be particularly preferred that the adapter element extends essentially rod-shaped from its underside to its upper side. Preferably, a console can be formed on the top of the rod-shaped base body, which preferably extends from the rod-shaped base body to its end face. Preferably, the rod-shaped base body can extend orthogonally to the surface of the foundation or the anchor section. The console can preferably extend orthogonally to the rod-shaped base body. The fastening device can preferably be formed by a recess, preferably a passage, which is preferably formed within the rod-shaped base body and/or the console. Furthermore, the fastening device can pass through a space between a first console, preferably the end face of the first console, a first rod-shaped adapter element and a second console, preferably the Front side of the second console, a second rod-shaped adapter element arranged at a distance from the first rod-shaped adapter element can be defined.
Gemäß einer weiter bevorzugten Ausführungsvariante ist vorgesehen, dass sich die Befestigungseinrichtung im Wesentlichen in vertikaler Richtung von einer Oberseite des Adapterelements durch das Adapterelement und/oder in ein Inneres des Adapterelements erstreckt. Vorzugsweise kann sich die Befestigungseinrichtung demnach orthogonal zur Oberseite des Adapterelements und/oder zur Unterseite des Adapterelements erstrecken. Insbesondere bevorzugt kann hierbei die Befestigungseinrichtung als eine Ausnehmung, insbesondere als eine Durchgangsöffnung ausgebildet sein.According to a further preferred embodiment variant, it is provided that the fastening device extends essentially in the vertical direction from an upper side of the adapter element through the adapter element and/or into an interior of the adapter element. Preferably, the fastening device can therefore extend orthogonally to the top of the adapter element and/or to the bottom of the adapter element. Particularly preferably, the fastening device can be designed as a recess, in particular as a through opening.
Vorzugsweise kann die Befestigungseinrichtung durch gegebenenfalls den Hohlraum und/oder gegebenenfalls den Zwischenraum und/oder die Ausnehmung definiert sein.Preferably, the fastening device can be defined by optionally the cavity and/or optionally the intermediate space and/or the recess.
Vorzugsweise kann ein erster Befestigungsabschnitt einen Durchgang von der Oberseite des Adapterelements zu einem zweiten Befestigungsabschnitt bilden. Der erste Befestigungsabschnitt kann hierbei eine Abmessung aufweisen, um Spannelemente durchzuführen. Der zweite Befestigungsabschnitt kann vorzugsweise entweder in dem Inneren des Adapterelements ausgebildet sein und eine Abmessung aufweisen, die eingerichtet ist, um ein Spannelement vorzugsweise mittels eines Ankers zu befestigen. Alternativ kann der zweite Befestigungsabschnitt vorzugsweise an der Unterseite des Adapterelements ausgebildet sein und das Spannelement vorzugsweise mittels eines Ankers zu befestigen.Preferably, a first attachment portion may form a passage from the top of the adapter element to a second attachment portion. The first fastening section can have a dimension in order to carry out clamping elements. The second fastening portion may preferably be formed either in the interior of the adapter element and have a dimension adapted to fasten a clamping element, preferably by means of an anchor. Alternatively, the second fastening section can preferably be formed on the underside of the adapter element and the clamping element can preferably be fastened by means of an anchor.
Insbesondere ist es bevorzugt, dass sich die Befestigungseinrichtung im Wesentlichen in vertikaler Richtung in ein Inneres des Adapterelements erstreckt.In particular, it is preferred that the fastening device extends essentially in a vertical direction into an interior of the adapter element.
Weiter bevorzugt ist, dass sich die Befestigungseinrichtung im Wesentlichen in vertikaler Richtung von einer Oberseite des Adapterelements durch das Adapterelement erstreckt.It is further preferred that the fastening device extends essentially in the vertical direction from an upper side of the adapter element through the adapter element.
Gemäß einer weiter bevorzugten Ausgestaltung ist vorgesehen, dass der Ankerabschnitt ein Anschlusselement umfasst das ausgebildet ist, um mit der Anschlusseinrichtung zusammenzuwirken. Hierzu können insbesondere bevorzugt Gewindestangen oder andere Spannglieder in dem Fundament integriert sein, also vorzugsweise in dem Fundament einbetoniert und/oder in dem Fundament verankert sein und vorzugsweise nach oben aus der Oberfläche des Fundaments hervorstehen. Alternativ oder zusätzlich kann vorzugsweise ein Fundamentkorb in dem Fundament integriert sein und die Gewindestanden oder die anderen Spannglieder umfassen, um das Adapterelement an den Fundamentkorb anzubinden. Die Gewindestanden oder die anderen Spannglieder können vorzugsweise durch die Anschlusseinrichtung, die vorzugsweise als ein Durchgang von der Unterseite des Adapterelements zu der Oberseite des Adapterelements ausgebildet ist, durchgezogen werden und vorzugsweise an der Oberseite des Adapterelements befestigt und/oder vorzugsweise verschraubt werden. Durch diese Ausgestaltung kann das Adapterelement besonders einfach und kostengünstig an dem Fundament angeschlossen werden und insbesondere sicher gegen beispielsweise Verschiebungen gesichert werden. Ein besonders zuverlässiger Anschluss des Adapterelements an dem Ankerabschnitt spielt insbesondere bei der Verspannung des Windenergieanlagen-Turms eine entscheidende Rolle. Insbesondere kann hierdurch das Fundament deutlich flacher ausgebildet werden. Ein weiterer Vorteil liegt darin, dass die Ausbildung des Fundamentkorbs und/oder der im Fundament integrierten Gewindestanden oder anderen Spanngliedern an einen Bereich des Ankerabschnitts angepasst werden kann.According to a further preferred embodiment, it is provided that the anchor section comprises a connection element which is designed to interact with the connection device. For this purpose, threaded rods or other tendons can particularly preferably be integrated into the foundation, i.e. preferably be concreted into the foundation and/or anchored in the foundation and preferably protrude upwards from the surface of the foundation. Alternatively or additionally, a foundation basket can preferably be integrated into the foundation and the Include threaded stands or the other tendons to connect the adapter element to the foundation cage. The threaded studs or the other tendons can preferably be pulled through the connecting device, which is preferably designed as a passage from the bottom of the adapter element to the top of the adapter element, and can preferably be fastened to the top of the adapter element and/or preferably screwed. This configuration allows the adapter element to be connected to the foundation in a particularly simple and cost-effective manner and, in particular, to be securely secured against displacement, for example. A particularly reliable connection of the adapter element to the anchor section plays a crucial role, particularly when bracing the wind turbine tower. In particular, this allows the foundation to be made significantly flatter. A further advantage is that the design of the foundation cage and/or the threaded supports or other tendons integrated in the foundation can be adapted to an area of the anchor section.
Besonders bevorzugt kann die Anschlusseinrichtung an der Seitenwand bzw. dem stabförmigen Grundkörper des Adapterelements ausgebildet sein und sich vorzugsweise von der Unterseite bis zu der Oberseite des Adapterelements erstrecken. Hierbei kann die Anschlusseinrichtung vorzugsweise eingerichtet sein, um mit dem Ankerabschnitt zusammenzuwirken und das Adapterelement vorzugsweise ortsfest an dem Fundament zu befestigen.Particularly preferably, the connection device can be formed on the side wall or the rod-shaped base body of the adapter element and preferably extend from the bottom to the top of the adapter element. Here, the connection device can preferably be set up to cooperate with the anchor section and to preferably fasten the adapter element in a stationary manner to the foundation.
Ferner ist es bevorzugt, dass das Adapterelement zwei, drei oder mehrere Anschlusseinrichtungen aufweist. Hierdurch wird eine besonders zuverlässige ortsfeste Befestigung des Adapterelements an dem Ankerabschnitt gewährleistet und aufgrund auftretender Kräfte gegen ungewolltes Verschieben gesichert.Furthermore, it is preferred that the adapter element has two, three or more connection devices. This ensures a particularly reliable, stationary attachment of the adapter element to the anchor section and protects it against unwanted displacement due to the forces that occur.
Gemäß einer weiter bevorzugten Ausführungsvariante ist vorgesehen, dass der Ankerabschnitt ein, zwei, drei oder mehrere Anschlusselemente umfasst, die ausgebildet sind, um mit der Anschlusseinrichtung zusammenzuwirken. Vorzugsweise können ein, zwei, drei oder mehrere Anschlusselemente pro Anschlusseinrichtung vorgesehen sein. Hierdurch kann das Adapterelement besonders zuverlässig am Ankerabschnitt befestigt werden und/oder gegebenenfalls kann hierdurch das Spannelement mittels des Adapterelements vorgespannt werden.According to a further preferred embodiment variant, it is provided that the anchor section comprises one, two, three or more connection elements which are designed to interact with the connection device. Preferably one, two, three or more connection elements can be provided per connection device. As a result, the adapter element can be fastened particularly reliably to the anchor section and/or, if necessary, the tensioning element can be prestressed by means of the adapter element.
Gemäß einer bevorzugten Ausführungsvariante umfasst das Fundament Stahlbeton und/oder Spannbeton oder besteht ganz oder teilweise aus Stahlbeton und/oder Spannbeton.According to a preferred embodiment variant, the foundation comprises reinforced concrete and/or prestressed concrete or consists entirely or partially of reinforced concrete and/or prestressed concrete.
Ferner ist es bevorzugt, dass das Adapterelement Stahlbeton und/oder Spannbeton umfasst oder ganz oder teilweise aus Stahlbeton und/oder Spannbeton besteht. Besonders bevorzugt ist es, dass das Adapterelement aus Stahl oder als Stahlbeton- und/oder Spannbeton-Fertigteil ausgebildet ist.Furthermore, it is preferred that the adapter element comprises reinforced concrete and/or prestressed concrete or consists entirely or partially of reinforced concrete and/or prestressed concrete. It is particularly preferred that the adapter element is made of steel or as a prefabricated reinforced concrete and/or prestressed concrete part.
Gemäß einer weiter bevorzugten Ausführungsvariante ist ein erster lichter Abstand zwischen einer Unterseite der Befestigungseinrichtung und dem Ankerabschnitt derart bemessen, dass dort ein Anker des Spannelements anordenbar ist und/oder ein zweiter lichter Abstand zwischen einer Unterseite des Adapterelements und dem Ankerabschnitt derart bemessen ist, dass dort ein Anker des Spannelements und/oder ein Spannwerkzeug zum Spannen des Spannelements anordenbar ist.According to a further preferred embodiment variant, a first clear distance between an underside of the fastening device and the anchor section is dimensioned such that an anchor of the tensioning element can be arranged there and/or a second clear distance between an underside of the adapter element and the anchor section is dimensioned such that there an anchor of the clamping element and/or a clamping tool for clamping the clamping element can be arranged.
Zum Verspannen eines Bauwerks insbesondere eines Turms einer Windenergieanlage werden vorzugsweise ein Spannanker und/oder ein Festanker verwendet. Der Spannanker kann vorzugsweise über einen oder mehrere Spannelemente mit dem Festanker an einer anderen Stelle des Bauwerks in Verbindung stehen und kann vorzugsweise durch Aufbringen von Zugspannung zwischen dem Spannanker und dem Festanker die Zugspannung auf ein Bauteil oder zwischen Bauteilen eines Bauwerks, wie zum Beispiel zwischen Turmsegmenten eines Turms, insbesondere eines Windenergieanlagen-Turms, erzeugen. Hierzu kann ein Spannanker Angriffsmittel zum Ansetzen des Spannwerkzeugs aufweisen und ist insbesondere ausgebildet, um einen Zugstrang gegen den Spannanker zu bewegen und diesen so unter Zugspannung zu setzen. Im Gegensatz dazu dient ein Festanker vorzugsweise dazu, um einen oder mehrere Zugstränge am Festanker zu halten. Hierzu kann ein Festanker an geeigneter Stelle des Bauwerks festgesetzt sein und bedarf vorzugsweise keiner Funktionsmittel zur Änderung oder Erhöhung einer Zugspannung eines Zugstrangs. Generell können das Verankern und/oder das Vorspannen der Spannglieder mittels des Spannankers vorzugsweise am oberen Ende oder am unteren Ende des Turms erfolgen.To brace a structure, in particular a tower of a wind turbine, a tension anchor and/or a fixed anchor are preferably used. The tension anchor can preferably be connected to the fixed anchor at another point in the structure via one or more tensioning elements and can preferably apply tensile stress to a component or between components of a structure, such as between tower segments, by applying tensile stress between the tension anchor and the fixed anchor of a tower, in particular a wind turbine tower. For this purpose, a tension anchor can have attack means for attaching the tensioning tool and is in particular designed to move a tension strand against the tension anchor and thus place it under tension. In contrast, a fixed anchor is preferably used to hold one or more tension cords to the fixed anchor. For this purpose, a fixed anchor can be fixed at a suitable location on the structure and preferably does not require any functional means to change or increase the tensile stress of a tension cord. In general, the anchoring and/or prestressing of the tendons can preferably be carried out at the upper end or at the lower end of the tower using the tension anchor.
Besonders bevorzugt können der erste lichte Abstand und/oder der zweite lichte Abstand jeweils von der Oberseite des Ankerabschnitts bemessen werden. Ferner ist es bevorzugt, wenn das Spannelement mittels eines Keils in dem Anker befestigbar ist. Durch diese Ausgestaltung wird eine Zugänglichkeit des Festanker und/oder des Spannankers gewährleistet und sowohl die Montage als auch Wartungsarbeiten vereinfacht.Particularly preferably, the first clear distance and/or the second clear distance can each be measured from the top of the anchor section. Furthermore, it is preferred if the tensioning element can be fastened in the anchor by means of a wedge. Through this Design ensures accessibility of the fixed anchor and/or the tension anchor and simplifies both assembly and maintenance work.
Eine weiter bevorzugte Fortbildung der Fundamentanordnung zeichnet sich durch eine Umlenkeinrichtung zum Umlenken eines Spannelements in Richtung der Befestigungseinrichtung aus. Diese Ausgestaltung ist insbesondere vorteilhaft, wenn eine interne Verspannung und/oder eine externe Verspannung nahe der Turmwandung erfolgen soll.A further preferred development of the foundation arrangement is characterized by a deflection device for deflecting a clamping element in the direction of the fastening device. This configuration is particularly advantageous if internal bracing and/or external bracing is to take place near the tower wall.
Vorzugsweise kann die Umlenkeinrichtung eine erste Umlenkeinheit und eine zweite Umlenkeinheit umfassen, wobei vorzugsweise die erste Umlenkeinheit im Wesentlichen in vertikaler Richtung, vorzugsweise zentriert, über der Befestigungseinrichtung angeordnet ist und ausgebildet ist, um ein Spannelement, das in vertikaler Richtung aus dem Adapterelement ragt, umzulenken, sodass sich dieses vorzugsweise im Wesentlichen horizontal in Richtung der Turmwandung erstreckt. Nahe der Turmwandung vorzugsweise an der Turmwandung oder in einem Inneren der Turmwandung vorzugsweise teilweise in dem Inneren der Turmwandung kann vorzugsweise die zweite Umlenkeinheit vorgesehen sein, die ausgebildet ist, um das Spannelement derart umzulenken, dass der Neigungswinkel des Spannelements dem Neigungswinkel des Windenergieanlagen-Turms entspricht und/oder das Spannelement im Wesentlichen parallel zu der Turmwandung verläuft. Durch dieses Ausgestaltung kann das Adapterelement von der Turmwandung beabstandet angeordnet sein und damit Spannelemente weiter innen befestigt und/oder vorgespannt werden, während gleichzeitig die Übertragung der Spannkraft auf die Turmwandung in vorteilhafter Weise in radialer Richtung weiter außen erfolgt. So können beispielsweise ungünstige Kraftleitungen und/oder Momente vermieden oder reduziert werden, die beim externen Verspannen insbesondere aufgrund Beabstandung zu der Turmwandung auftreten können. Dadurch wird ermöglicht, dass Spannen mittels des Adapterelements in einer Vielzahl von Türmen einsetzbar ist, sowohl als einzige oder zusätzliche Spanntechnik bei der Neuerrichtung von Türmen oder beim Nachrüsten von Türmen.Preferably, the deflection device can comprise a first deflection unit and a second deflection unit, wherein preferably the first deflection unit is arranged essentially in the vertical direction, preferably centered, above the fastening device and is designed to deflect a clamping element which protrudes in the vertical direction from the adapter element , so that this preferably extends essentially horizontally in the direction of the tower wall. Near the tower wall, preferably on the tower wall or in an interior of the tower wall, preferably partially in the interior of the tower wall, the second deflection unit can preferably be provided, which is designed to deflect the clamping element in such a way that the angle of inclination of the clamping element corresponds to the angle of inclination of the wind turbine tower and/or the clamping element runs essentially parallel to the tower wall. Through this configuration, the adapter element can be arranged at a distance from the tower wall and thus clamping elements can be fastened and/or prestressed further inside, while at the same time the transfer of the clamping force to the tower wall advantageously takes place further out in the radial direction. For example, unfavorable force lines and/or moments can be avoided or reduced, which can occur during external bracing, particularly due to the spacing from the tower wall. This makes it possible for clamping by means of the adapter element to be used in a large number of towers, both as the sole or additional clamping technology when building new towers or when retrofitting towers.
Gemäß einem weiteren Aspekt wird beschrieben ein Adapterelement für eine Fundamentanordnung mit einer Befestigungseinrichtung zur Befestigung eines unteren Ende eines Spannelements zur Vorspannung eines Turms für eine Windenergieanlage, und mit einer Anschlusseinrichtung zum Anschließen des Adapterelements an einem Ankerabschnitt eines Fundaments.According to a further aspect, an adapter element for a foundation arrangement is described with a fastening device for fastening a lower end of a tensioning element for prestressing a tower for a wind turbine, and with a connection device for connecting the adapter element to an anchor section of a foundation.
Darüber hinaus wird der Aspekt einer Spannvorrichtung für einen Turm einer Windenergieanlage beschrieben, umfassend ein Adapterelement und/oder eine Fundamentanordnung und ein Spannelement, dessen unteres Ende an der Befestigungseinrichtung befestigt ist und dessen oberes Ende an einem oberen Ende des Turms befestigbar ist.In addition, the aspect of a clamping device for a tower of a wind turbine is described, comprising an adapter element and / or a foundation arrangement and a clamping element, the lower end of which is attached to the fastening device and the upper end of which can be attached to an upper end of the tower.
Vorzugsweise kann durch das Spannen des Spannelements eine Spannkraft auf die Befestigungseinrichtung und/oder über die Befestigungseinrichtung auf das Adapterelement und/oder über das Adapterelement auf das Fundament, insbesondere den Ankerabschnitt, übertragen werden.Preferably, by tensioning the tensioning element, a tensioning force can be transmitted to the fastening device and/or via the fastening device to the adapter element and/or via the adapter element to the foundation, in particular the anchor section.
Darüber hinaus wird der Aspekt einer Verwendung eines Adapterelements zum Verankern und/oder Vorspannen eines Spannelements und/oder in einer Spannvorrichtung beschrieben.In addition, the aspect of using an adapter element for anchoring and/or prestressing a tensioning element and/or in a tensioning device is described.
Gemäß einem weiteren Aspekt wird beschrieben ein Turm für eine Windenergieanlage, umfassend eine Spannvorrichtung und/oder ein Adapterelement und/oder eine Fundamentanordnung, wobei eine Turmwandung auf dem Ankerabschnitt angeordnet ist.According to a further aspect, a tower for a wind turbine is described, comprising a clamping device and/or an adapter element and/or a foundation arrangement, wherein a tower wall is arranged on the anchor section.
Gemäß einem weiteren Aspekt wird beschrieben eine Windenergieanlage, umfassend einen Turm und/oder einem Adapterelement und/oder einer Fundamentanordnung.According to a further aspect, a wind turbine is described, comprising a tower and/or an adapter element and/or a foundation arrangement.
Für weitere Vorteile, Ausführungsvarianten und Ausführungsdetails dieser weiteren Aspekte und ihrer möglichen Fortbildungen wird auch auf die zuvor erfolgte Beschreibung zu den entsprechenden Merkmalen und Fortbildungen der Fundamentanordnung verwiesen.For further advantages, design variants and design details of these further aspects and their possible developments, reference is also made to the previous description of the corresponding features and developments of the foundation arrangement.
Gemäß einem weiteren Aspekt wird beschrieben ein Verfahren zur Herstellung einer Fundamentanordnung für eine Windenergieanlage, umfassend die Schritte: Herstellen eines Fundaments mit einem Tragabschnitt und einem Ankerabschnitt sowie Herstellen oder Bereitstellen eines auf dem Ankerabschnitt anordenbaren Adapterelements mit einer Befestigungseinrichtung zur Befestigung eines unteren Endes eine Spannelements zur Vorspannung eines Turms für eine Windenergieanlage, und mit einer Anschlusseinrichtung zum Anschließen des Adapterelements an den Ankerabschnitt des Fundaments.According to a further aspect, a method for producing a foundation arrangement for a wind turbine is described, comprising the steps: producing a foundation with a support section and an anchor section and producing or providing an adapter element that can be arranged on the anchor section with a fastening device for fastening a lower end of a clamping element Prestressing of a tower for a wind turbine, and with a connection device for connecting the adapter element to the anchor section of the foundation.
Vorzugsweise kann das Fundament und das Adapterelement gleichzeitig bzw. kontinuierlich hergestellt bzw. bereitgestellt werden. Insbesondere kann das Fundament vor Ort vorzugsweise aus Ortbeton, insbesondere bevorzugt einstückig, gegossen werden.Preferably, the foundation and the adapter element can be manufactured or provided simultaneously or continuously. In particular, the foundation can be cast on site, preferably from in-situ concrete, particularly preferably in one piece.
Weiter vorzugsweise kann das Adapterelement als ein Fertigteil oder Halbfertigteil bereitgestellt werden und nach dem Gießen und Aushärten des Fundaments auf dem dafür vorgesehenen Ankerabschnitt angeordnet und befestigt werden.Further preferably, the adapter element can be provided as a finished part or semi-finished part and, after the foundation has been cast and hardened, can be arranged and fastened on the anchor section provided for this purpose.
Das Verfahren zur Herstellung einer Fundamentanordnung für eine Windenergieanlage kann vorzugsweise fortgebildet werden durch vorzugsweise Transportieren eines Adapterelements von einer Herstellungsstelle zu einer Montagestelle.The method for producing a foundation arrangement for a wind turbine can preferably be developed by preferably transporting an adapter element from a manufacturing point to an assembly point.
Eine weiter bevorzugte Fortbildung des Verfahrens zeichnet sich dadurch aus, dass das Herstellen eines Fundaments das Bereitstellen von einem Anschlusselement umfasst, das ausgebildet ist, um mit einer Anschlusseinrichtung zusammenzuwirken.A further preferred development of the method is characterized in that producing a foundation includes providing a connection element that is designed to interact with a connection device.
Vorzugsweise kann das Fundament derart ausgebildet werden, dass im Bereich des Ankerabschnitts das Anschlusselement vorzugsweise in Form von Anschlussbewehrung, also Gewindestangen oder andere Spannglieder, aus einem Inneren des Fundaments vorzugsweise im Wesentlichen orthogonal aus einer Oberseite des Fundaments herausragt.Preferably, the foundation can be designed in such a way that in the area of the anchor section, the connecting element, preferably in the form of connecting reinforcement, i.e. threaded rods or other tendons, protrudes from an interior of the foundation, preferably essentially orthogonally from an upper side of the foundation.
Erfindungsgemäß wird die eingangs genannte Aufgabe gelöst durch ein Verfahren zum Vorspannen eines Turms einer Windenergieanlage, umfassend die Schritte: Bereitstellen einer Spannvorrichtung mit einer Fundamentanordnung und einem Spannelement, Befestigen eines unteren Endes eines Spannelements an einer Befestigungseinrichtung des Adapterelements, Befestigen eines oberen Endes eines Spannelements an einem oberen Ende des Turms sowie Spannen des Spannelements am unteren Ende des Spannelements und/oder am oberen Ende des Spannelements. Vorzugsweise kann das untere Ende des Spannelements durch eine Ausnehmung hindurch gezogen und mittels eines darunterliegenden Spannankers mit Keilen befestigt werden.According to the invention, the aforementioned object is achieved by a method for prestressing a tower of a wind turbine, comprising the steps: providing a clamping device with a foundation arrangement and a clamping element, attaching a lower end of a clamping element to a fastening device of the adapter element, attaching an upper end of a clamping element an upper end of the tower and tensioning the clamping element at the lower end of the clamping element and / or at the upper end of the clamping element. Preferably, the lower end of the clamping element can be pulled through a recess and secured with wedges by means of a clamping anchor underneath.
Bevorzugt kann vorzugsweise in einem ersten Schritt das obere Ende des Spannelements an dem oberen Ende des Turms befestigt werden und anschließend das Spannelement am unteren Ende des Spannelements befestigt und vorzugsweise gespannt werden. Alternativ hierzu können vorzugsweise in einem ersten Schritt das untere Ende des Spannelements am unteren Ende des Turms befestigt werden und im Anschluss daran das Spannelement am oberen Ende des Turms befestigt und vorzugsweise gespannt werden. Vorzugsweise kann eine Befestigung des unteren und des oberen Endes des Spannelements vorzugsweise zeitgleich bzw. kontinuierlich erfolgen, wobei das Spannen vorzugsweise erst nach Befestigen beider Enden erfolgt.Preferably, in a first step, the upper end of the clamping element can be attached to the upper end of the tower and then the clamping element can be attached to the lower end of the clamping element and preferably clamped. Alternatively, the lower end of the clamping element can preferably be attached to the lower end of the tower in a first step and then the clamping element can be attached to the upper end of the tower and preferably tensioned. Preferably, the lower and upper ends of the Clamping element preferably takes place simultaneously or continuously, with the clamping preferably only taking place after both ends have been fastened.
Ferner ist es bevorzugt, dass das Spannen des Spannelements das Ansetzen eines Spannwerkzeugs an einem oberen Ende des Spannelements angeordneten Spannanker und/oder das Ansetzen eines Spannwerkzeugs an einem unteren Ende des Spannelements angeordneten Spannanker umfasst.Furthermore, it is preferred that the tensioning of the tensioning element includes placing a tensioning tool on a tensioning anchor arranged at an upper end of the tensioning element and/or applying a tensioning tool on a tensioning anchor arranged on a lower end of the tensioning element.
Es kann beispielsweise in einem ersten Schritt oben und/oder unten gespannt werden.For example, in a first step it can be tensioned at the top and/or bottom.
Erfindungsgemäß besteht zwischen dem Ankerabschnitt und dem Adapterelement, insbesondere einer Oberseite des Ankerabschnitts und einer Unterseite des Adapterelements, vor dem Spannen des Spannelements ein lichter Abstand, der nach dem Spannen des Spannelements verkleinert ist. Vorzugsweise kann dieser lichte Abstand gegebenenfalls bis auf null verkleinert werden.According to the invention, there is a clear distance between the anchor section and the adapter element, in particular an upper side of the anchor section and an underside of the adapter element, before the tensioning element is tensioned, which is reduced after the tensioning element has been tensioned. Preferably, this clear distance can optionally be reduced to zero.
Zwischen dem Ankerabschnitt und dem Adapterelement ist, vorzugsweise temporär, ein Abstandshalter eingesetzt. Eine weitere bevorzugte Fortbildung des Verfahrens zeichnet sich dadurch aus, dass die Verkleinerung des lichten Abstands zwischen dem Ankerabschnitt des Fundaments und dem Adapterelement vorzugsweise mittels der Anschlusselemente und vorzugsweise der Anschlusseinrichtung erfolgt und/oder eine Höhe des Abstandshalters vorzugsweise variabel ist und/oder der Abstandshalter vorzugsweise vor dem Spannen des Spannelements entfernt wird.A spacer is inserted, preferably temporarily, between the anchor section and the adapter element. A further preferred development of the method is characterized in that the reduction of the clear distance between the anchor section of the foundation and the adapter element is preferably carried out by means of the connection elements and preferably the connection device and/or a height of the spacer is preferably variable and/or the spacer is preferably is removed before tensioning the clamping element.
Die hier beschriebenen Verfahren und ihre möglichen Fortbildungen weisen Merkmale bzw. Verfahrensschritte auf, die sie insbesondere dafür geeignet machen, für eine hier beschriebene Fundamentanordnung und ihre Fortbildungen sowie für ein Adapterelement, eine Spannvorrichtung, einen Windenergieanlagenturm und eine Windenergieanlage verwendet zu werden. Für weitere Vorteile, Ausführungsvarianten und Ausführungsdetails dieserweiteren Aspekte und ihrer möglichen Fortbildungen wird auch auf die Beschreibung zu den entsprechenden Merkmalen und Fortbildungen der anderen Aspekte verwiesen.The methods described here and their possible developments have features or method steps that make them particularly suitable for being used for a foundation arrangement described here and its developments as well as for an adapter element, a clamping device, a wind turbine tower and a wind turbine. For further advantages, design variants and design details of these additional aspects and their possible developments, reference is also made to the description of the corresponding features and developments of the other aspects.
Bevorzugte Ausführungsbeispiele werden beispielhaft anhand der beiliegenden Figuren erläutert. Es zeigen:
- Fig. 1
- eine dreidimensionale Ansicht einer Windenergieanlage mit einem Turm und einer Gondel;
- Fig. 2
- eine Schnittdarstellung einer Fundamentanordnung gemäß einer ersten Ausführungsvariante;
- Fig. 3
- eine Schnittdarstellung einer Fundamentanordnung gemäß einer zweiten Ausführungsvariante;
- Fig. 4
- eine Schnittdarstellung einer Fundamentanordnung gemäß einer dritten Ausführungsvariante;
- Fig. 5
- eine schematische Draufsicht einer Fundamentanordnung gemäß einer ersten Variante zur Anordnung von Adapterelementen;
- Fig. 6
- eine schematische Draufsicht einer Fundamentanordnung gemäß einer zweiten Variante zur Anordnung von Adapterelementen;
- Fig. 1
- a three-dimensional view of a wind turbine with a tower and a nacelle;
- Fig. 2
- a sectional view of a foundation arrangement according to a first embodiment variant;
- Fig. 3
- a sectional view of a foundation arrangement according to a second embodiment variant;
- Fig. 4
- a sectional view of a foundation arrangement according to a third embodiment variant;
- Fig. 5
- a schematic top view of a foundation arrangement according to a first variant for arranging adapter elements;
- Fig. 6
- a schematic top view of a foundation arrangement according to a second variant for arranging adapter elements;
In den Figuren sind gleiche oder im Wesentlichen funktionsgleiche bzw. -ähnliche Elemente mit den gleichen Bezugszeichen bezeichnet.In the figures, identical or essentially functionally identical or similar elements are designated with the same reference numerals.
Die
Das Adapterelement 2020 umfasst eine Anschlusseinrichtung 2022, die sich von einer Oberseite 2020b des Adapterelements 2020 zu einer Unterseite 2020a des Adapterelements 2020 erstreckt und als eine Art Durchgangsöffnung ausgebildet ist. Das Adapterelement 2020 ist hierbei derart auf dem Ankerabschnitt 202 platziert, dass die Anschlusselemente 2001 durch die Anschlusseinrichtung 2022 hindurchgeführt und an einer Oberseite 2020b des Adapterelements 2020 befestigt sind.The
Das Adapterelement 2020 ist als ein Kegelstumpf ausgebildet und umfasst eine Seitenwand, die sich von der Unterseite 2020a des Adapterelements 2020 zu der Oberseite 2020a des Adapterelements 2020 erstreckt und einen von der Seitenwand radial nach innen vorstehenden Kragen 2025 umfasst. Die Seitenwand und der Kragen 2025 definieren einen Hohlraum im Inneren des Adapterelements. Dieser Hohlraum ist als ein Durchgang ausgebildet und erstreckt sich in vertikaler Richtung von der Oberseite 2020b des Adapterelements 2020 durch das Adapterelement 2020. Hierbei definiert der Hohlraum umfassend einen ersten Befestigungsabschnitt 2021a und einen zweiten Befestigungsabschnitt 2021b die Befestigungseinrichtung 2021. Die Seitenwand weist in etwa eine doppelt so große Höhe auf als der Kragen 2025. Der erste Befestigungsabschnitt 2021a erstreckt sich von der Oberseite 2020b des Adapterelements 2020 zu dem zweiten Befestigungsabschnitt 2021b und definiert einen Durchgang, der einen Durchmesser aufweist, um ein Durchführen der Spannelemente 303 zu ermöglichen. Der erste Befestigungsabschnitt 2021a ist hierbei von dem Kragen 2025 definiert. Der zweite Befestigungsabschnitt 2021b erstreckt sich zwischen dem ersten Befestigungsabschnitt 2021a und der Unterseite 2020a des Adapterelements 2020. Ein Durchmesser des zweiten Befestigungsabschnitts 2021b ist größer als ein Durchmesser des ersten Befestigungsabschnitts 2021a, um einen Anker 301, in welchem die Spannelemente 303 mittels Keilen 302 befestigt sind, zuverlässig zu verankern. In den
Anhand der
Die
In
Die Fundamentanordnung, das Adapterelement und das Fundament haben verschiedene Vorteile. Insbesondere können Adapterelemente kostengünstig hergestellt, insbesondere vorgefertigt, und gut transportiert werden. Ferner kann auch das Fundament flacher und weniger komplex hergestellt werden, sodass sowohl Arbeitszeit also auch Kosten eingespart werden können. Insbesondere kann auch eine Lebenszeit eines Windenergieanlagen-Turms verlängert werden, da Adapterelemente und/oder Spannelemente bei Beschädigungen einfach ausgetauscht werden können.The foundation arrangement, the adapter element and the foundation have various advantages. In particular, adapter elements can be manufactured inexpensively, in particular prefabricated, and easily transported. Furthermore, the foundation can also be made flatter and less complex, so that both working time and costs can be saved. In particular, the service life of a wind turbine tower can be extended because adapter elements and/or clamping elements can be easily replaced if they are damaged.
- 100100
- WindenergieanlageWind turbine
- 102102
- TurmTower
- 104104
- Gondelgondola
- 106106
- aerodynamischer Rotoraerodynamic rotor
- 108108
- RotorblätterRotor blades
- 110110
- Spinnercrackhead
- 200200
- FundamentanordnungFoundation arrangement
- 201201
- Fundamentfoundation
- 202202
- Ankerabschnittanchor section
- 203203
- TragabschnittSupport section
- 300300
- SpannvorrichtungTensioning device
- 301301
- Anker / Spannanker / FestankerAnchor / tension anchor / fixed anchor
- 302302
- Keilwedge
- 303303
- SpannelementClamping element
- 400400
- UmlenkeinrichtungDeflection device
- 401401
- erste Umlenkeinheitfirst deflection unit
- 402402
- zweite Umlenkeinheitsecond deflection unit
- 10201020
- Turmwandungtower wall
- 20002000
- FundamentkorbFoundation basket
- 20012001
- AnschlusselementConnection element
- 20202020
- AdapterelementAdapter element
- 2020a2020a
- Unterseitebottom
- 2020b2020b
- OberseiteTop
- 20212021
- BefestigungseinrichtungFastening device
- 2021a2021a
- erster Befestigungsabschnittfirst fastening section
- 2021b2021b
- zweiter Befestigungsabschnittsecond fastening section
- 20222022
- AnschlusseinrichtungConnection device
- 20242024
- SeitenwandSide wall
- 20252025
- Kragencollar
- 20262026
- AbstandshalterSpacers
Claims (9)
- A method for pretensioning a tower (102) of a wind power installation (100), comprising the steps:- providing a tensioning device (300) having a foundation arrangement (200) and a tensioning element (303),∘ wherein the foundation arrangement (200) comprises a foundation (201) having an anchor portion (202) and a support portion (203) for supporting a tower wall (1020), and∘ wherein the foundation arrangement (200) comprises an adapter element (2020) having a fastening means (2021) for fastening a lower end of the tensioning element (303) for pretensioning a tower (102) for the wind power installation (100), and a connection means (2022) for connecting the adapter element (2020) to the anchor portion (202) of the foundation (201),- fastening a lower end of the tensioning element (303) to a fastening means (2021) of the adapter element (2020),- fastening an upper end of the tensioning element (303) to an upper end of the tower (102),- tensioning the tensioning element (303) at the lower end of the tensioning element (303) and/or at the upper end of the tensioning element (303),- wherein the tensioning of the tensioning element (303) is effected by reduction of a clearance between the foundation (201) and the adapter element (2020), and- characterized in that a spacer (2026) is inserted between the anchor portion (202) and the adapter element (2020).
- The method for tensioning a tower (102) of a wind power installation (100) as claimed in claim 1, characterized in that the adapter element (2020) is annular.
- The method for tensioning a tower (102) of a wind power installation (100) as claimed in at least one of the preceding claims, characterized in that the fastening means (2021) extends substantially in a vertical direction from an upper side (2020b) of the adapter element (2020) through the adapter element (2020) (2020).
- The method for tensioning a tower (102) of a wind power installation (100) as claimed in at least one of the preceding claims, characterized in that the fastening means (2021) extends into an interior of the adapter element (2020).
- The method for tensioning a tower (102) of a wind power installation (100) as claimed in at least one of the preceding claims, characterized in that the anchor portion (202) comprises a connection element (2001) that is designed to act in combination with the connection means (2022).
- The method for tensioning a tower (102) of a wind power installation (100) as claimed in at least one of the preceding claims, characterized in that- a first clearance between an underside of the fastening means (2021) and the anchor portion (202) is dimensioned in such a manner that an anchor (301) of the tensioning element (303) can be arranged there.
- The method for tensioning a tower (102) of a wind power installation (100) as claimed in at least one of the preceding claims, characterized in that- a second clearance between an underside (2020a) of the adapter element (2020) and the anchor portion is dimensioned in such a manner that an anchor (301) of the tensioning element (303) can be arranged there.
- The method for tensioning a tower (102) of a wind power installation (100) as claimed in at least one of the preceding claims, characterized in that- a second clearance between an underside (2020a) of the adapter element (2020) and the anchor portion is dimensioned in such a manner that a tensioning tool for tensioning the tensioning element (303) can be arranged there.
- The method for tensioning a tower (102) of a wind power installation (100) as claimed in at least one of the preceding claims, comprising a deflection means (400) for deflecting a tensioning element (303) in the direction of the fastening means (2021).
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
DE102018131443.4A DE102018131443A1 (en) | 2018-12-07 | 2018-12-07 | Foundation arrangement, adapter element, tensioning device and tower of a wind energy installation and method for prestressing a tower of a wind energy installation |
PCT/EP2019/082025 WO2020114789A1 (en) | 2018-12-07 | 2019-11-21 | Method for pretensioning a tower of a wind power plant |
Publications (3)
Publication Number | Publication Date |
---|---|
EP3891386A1 EP3891386A1 (en) | 2021-10-13 |
EP3891386B1 true EP3891386B1 (en) | 2023-09-13 |
EP3891386C0 EP3891386C0 (en) | 2023-09-13 |
Family
ID=68653471
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP19808573.0A Active EP3891386B1 (en) | 2018-12-07 | 2019-11-21 | Method for pretensioning a tower of a wind power plant |
Country Status (5)
Country | Link |
---|---|
US (1) | US11933061B2 (en) |
EP (1) | EP3891386B1 (en) |
CN (1) | CN113167243A (en) |
DE (1) | DE102018131443A1 (en) |
WO (1) | WO2020114789A1 (en) |
Families Citing this family (2)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE102020125441A1 (en) * | 2020-09-29 | 2022-03-31 | Anker Foundations GmbH | Foundation for a wind turbine |
CN113107779B (en) * | 2021-05-18 | 2022-06-14 | 中国石油大学(北京) | Quick connecting device of fan tower and lower part foundation |
Family Cites Families (28)
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DE10031683A1 (en) | 2000-06-29 | 2002-01-24 | Aloys Wobben | Prestressed concrete tower for a wind turbine and a wind turbine |
WO2008000265A1 (en) * | 2006-06-30 | 2008-01-03 | Vestas Wind Systems A/S | A wind turbine tower and a control system and method for altering the eigenfrequency of a wind turbine tower |
US20100132299A1 (en) * | 2008-12-02 | 2010-06-03 | General Electric Company | Wind turbine with improved tower and method of assembling same |
PL2339094T3 (en) * | 2009-12-23 | 2016-12-30 | Tower having a pre-stressed concrete column and construction method | |
CN102834572B (en) * | 2010-02-01 | 2015-01-14 | 科耐拓有限公司 | Tower construction and method for erecting the tower construction |
US10107265B2 (en) * | 2010-10-20 | 2018-10-23 | Mhi Vestas Offshore Wind A/S | Foundation for a wind turbine and method of making same |
US8443557B2 (en) * | 2011-09-16 | 2013-05-21 | General Electric Company | Tower base section of a wind turbine, a wind turbine and a system for mounting a tower |
DE102011085947A1 (en) * | 2011-11-08 | 2013-05-08 | Wobben Properties Gmbh | Tower foot section of a wind turbine |
WO2014033332A1 (en) | 2012-09-03 | 2014-03-06 | Philipp Wagner | Tower construction of a wind turbine and method for stabilizing a tower construction of a wind turbine |
US9340947B2 (en) * | 2013-03-07 | 2016-05-17 | Allan P. Henderson | Perimeter pile anchor foundation |
DE102013211750A1 (en) | 2013-06-21 | 2014-12-24 | Wobben Properties Gmbh | Wind turbine and wind turbine foundation |
DE102013225128A1 (en) | 2013-12-06 | 2015-06-11 | Wobben Properties Gmbh | Wind turbine and wind turbine tower |
DE102013226536A1 (en) * | 2013-12-18 | 2015-06-18 | Wobben Properties Gmbh | Arrangement with a concrete foundation and a tower and method for erecting a tower |
CA2940979C (en) * | 2014-02-28 | 2022-04-05 | University Of Maine System Board Of Trustees | Hybrid concrete - composite tower for a wind turbine and method of manufacturing |
CN204024188U (en) * | 2014-07-10 | 2014-12-17 | 中国电建集团西北勘测设计研究院有限公司 | A kind of concrete pylon external prestressing anchor Shu Pingheng screw stretching anchor device |
DE102015216444A1 (en) | 2015-08-27 | 2017-03-02 | Wobben Properties Gmbh | Wind turbine |
BR112018003674A2 (en) * | 2015-08-31 | 2018-09-25 | Siemens Gamesa Renewable Energy, Inc. | tower segment and method using segmented backing plate |
CA2998110C (en) * | 2015-08-31 | 2020-09-08 | Siemens Gamesa Renewable Energy, Inc. | System and method for installing a tensioning tendon in a wind turbine tower |
MX2018002589A (en) * | 2015-08-31 | 2019-01-24 | Siemens Gamesa Renewable Energy Inc | Concrete equipment tower with tensioning tendon guide slot. |
CA2916228C (en) * | 2015-12-23 | 2019-02-26 | 649119 N.B. Inc. | Pre-cast concrete foundation of modular construction for telecommunication or wind turbine tower |
DE102016203494A1 (en) * | 2016-01-20 | 2017-07-20 | Ventur GmbH | Adapter device for a tower and method of manufacture |
DE102016014847A1 (en) * | 2016-12-14 | 2018-06-14 | Senvion Gmbh | Method for erecting a prestressed concrete wind turbine tower and corresponding wind turbine tower |
EP3646406B1 (en) * | 2017-06-26 | 2023-10-25 | Tower Engineering Solutions, LLC | Method for reinforcing a stealth pole |
DE102018107421A1 (en) * | 2017-08-01 | 2019-02-07 | Max Bögl Wind AG | Foundation for a structure prestressed by means of a plurality of tendons and structure prestressed by means of a plurality of prestressed tendons |
DE102018112857A1 (en) * | 2017-12-13 | 2019-06-13 | Universelle-Fertigteil-Fundamente GmbH | Foundation for a wind turbine |
CN108266330A (en) * | 2018-03-06 | 2018-07-10 | 中国电建集团华东勘测设计研究院有限公司 | A kind of Wind turbines prestressing force steel reinforced concrete tower |
US11155976B1 (en) * | 2018-09-11 | 2021-10-26 | Glenn P. Gillen | Precast deep foundation system |
DE102019126558A1 (en) * | 2019-10-02 | 2021-04-08 | Anker Foundations GmbH | Foundation for a wind turbine |
-
2018
- 2018-12-07 DE DE102018131443.4A patent/DE102018131443A1/en not_active Withdrawn
-
2019
- 2019-11-21 WO PCT/EP2019/082025 patent/WO2020114789A1/en unknown
- 2019-11-21 CN CN201980080656.XA patent/CN113167243A/en active Pending
- 2019-11-21 EP EP19808573.0A patent/EP3891386B1/en active Active
- 2019-11-21 US US17/311,637 patent/US11933061B2/en active Active
Also Published As
Publication number | Publication date |
---|---|
DE102018131443A1 (en) | 2020-06-10 |
WO2020114789A1 (en) | 2020-06-11 |
EP3891386C0 (en) | 2023-09-13 |
US11933061B2 (en) | 2024-03-19 |
CN113167243A (en) | 2021-07-23 |
EP3891386A1 (en) | 2021-10-13 |
US20220025670A1 (en) | 2022-01-27 |
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